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Journal of Applied Polymer Science Research Papers - Academia.edu
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The structure and the... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_6033330" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">Polymeric curing agent modified with hexamethyldisilazane (PCA-D), or with hexamethylcyclotrisilazane (PCA-T), was used to improve the mechanical properties of hydroxyl-teminated polydimethylsiloxane (PDMS) rubber. The structure and the gel time of PCA were characterized by 29Si NMR and shear viscosity measurement, respectively. The PCA modified with silazanes was more stable in storage than that without treatment (PCA-0). Chemical bonds were formed during the reaction of silazanes and PCA according to 29Si NMR results. The crosslink density (γe) and the mechanical properties of PCA/PDMS rubber were determined by swelling equilibrium and stress–strain tests. It was found that PCA treated with both silazanes could better enhance the mechanical properties of PCA/PDMS rubber compared with PCA-0. PCA-T/PDMS rubber, with additional crosslinks, was the best among the three types of PCA/PDMS rubber on the mechanical properties. © 2008 Wiley Periodicals, Inc. 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The structure and the gel time of PCA were characterized by 29Si NMR and shear viscosity measurement, respectively. The PCA modified with silazanes was more stable in storage than that without treatment (PCA-0). Chemical bonds were formed during the reaction of silazanes and PCA according to 29Si NMR results. The crosslink density (γe) and the mechanical properties of PCA/PDMS rubber were determined by swelling equilibrium and stress–strain tests. It was found that PCA treated with both silazanes could better enhance the mechanical properties of PCA/PDMS rubber compared with PCA-0. PCA-T/PDMS rubber, with additional crosslinks, was the best among the three types of PCA/PDMS rubber on the mechanical properties. © 2008 Wiley Periodicals, Inc. 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class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/7898333/Epoxidized_natural_rubber_alumina_nanoparticle_composites_Optimization_of_mixer_parameters_via_response_surface_methodology">Epoxidized natural rubber-alumina nanoparticle composites: Optimization of mixer parameters via response surface methodology</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">Epoxidized natural rubber–alumina nanoparticle composites were prepared by melt compounding with an internal mixer for a constant filler loading of 10 phr. Mixer parameters such as the mixing temperature, mixing time, and rotor speed were... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_7898333" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">Epoxidized natural rubber–alumina nanoparticle composites were prepared by melt compounding with an internal mixer for a constant filler loading of 10 phr. Mixer parameters such as the mixing temperature, mixing time, and rotor speed were screened and optimized with response surface methodology to maximize the impact strength. The parameters were selected as three independent variables and the impact strength (J/m) was selected as the response in a screening factor study. The mixing temperature and its interaction terms were identified as insignificant factors with a P value greater than 0.0500. The optimum calculated values of the tested variables (rotor speed and mixing time) for the maximum impact strength were found to be a rotor speed of 60 rpm and a mixing time of 6 min with a predicted impact strength of 208.88 J/m. These predicted optimum parameters were tested in real experiments. The final impact strength was found to be close to the predicted value of 215.84 J/m, with only a 3.33% deviation. © 2009 Wiley Periodicals, Inc. 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Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=48449227]'), work: {"id":48449227,"title":"Influence of compatibilizer on notched impact strength and fractography of HDPE-organoclay composites","created_at":"2021-05-04T19:05:24.631-07:00","url":"https://www.academia.edu/48449227/Influence_of_compatibilizer_on_notched_impact_strength_and_fractography_of_HDPE_organoclay_composites?f_ri=966213","dom_id":"work_48449227","summary":null,"downloadable_attachments":[{"id":67055149,"asset_id":48449227,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":155658458,"first_name":"Pornsawan","last_name":"Amornsakchai","domain_name":"rmutr","page_name":"PornsawanAmornsakchai","display_name":"Pornsawan Amornsakchai","profile_url":"https://rmutr.academia.edu/PornsawanAmornsakchai?f_ri=966213","photo":"https://0.academia-photos.com/155658458/50501250/38527221/s65_pornsawan.amornsakchai.jpeg"}],"research_interests":[{"id":48,"name":"Engineering","url":"https://www.academia.edu/Documents/in/Engineering?f_ri=966213","nofollow":false},{"id":10866,"name":"Morphology","url":"https://www.academia.edu/Documents/in/Morphology?f_ri=966213","nofollow":false},{"id":169323,"name":"Composite Material","url":"https://www.academia.edu/Documents/in/Composite_Material?f_ri=966213","nofollow":false},{"id":250906,"name":"Fractography","url":"https://www.academia.edu/Documents/in/Fractography?f_ri=966213","nofollow":false},{"id":260118,"name":"CHEMICAL SCIENCES","url":"https://www.academia.edu/Documents/in/CHEMICAL_SCIENCES?f_ri=966213"},{"id":387395,"name":"Impact Strength","url":"https://www.academia.edu/Documents/in/Impact_Strength?f_ri=966213"},{"id":586110,"name":"Elastic Modulus","url":"https://www.academia.edu/Documents/in/Elastic_Modulus?f_ri=966213"},{"id":966213,"name":"Journal of Applied Polymer Science","url":"https://www.academia.edu/Documents/in/Journal_of_Applied_Polymer_Science?f_ri=966213"}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_47189607" data-work_id="47189607" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/47189607/Rheological_behavior_of_hydrophilic_silica_dispersion_in_polyethylene_glycol">Rheological behavior of hydrophilic silica dispersion in polyethylene glycol</a></div></div><div class="u-pb4x u-mt3x"></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share 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47189607; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=47189607]").text(description); $(".js-view-count-work_47189607").attr('title', description).tooltip(); }); });</script></span><script>$(function() { $(".js-view-count-work_47189607").removeClass('hidden') })</script></div></li><li class="InlineList-item u-positionRelative" style="max-width: 250px"><div class="u-positionAbsolute" data-has-card-for-ri-list="47189607"><i class="fa fa-tag InlineList-item-icon u-positionRelative"></i> <a class="InlineList-item-text u-positionRelative">5</a> </div><span class="InlineList-item-text u-textTruncate u-pl9x"><a class="InlineList-item-text" data-has-card-for-ri="48" href="https://www.academia.edu/Documents/in/Engineering">Engineering</a>, <script data-card-contents-for-ri="48" type="text/json">{"id":48,"name":"Engineering","url":"https://www.academia.edu/Documents/in/Engineering?f_ri=966213","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="98440" href="https://www.academia.edu/Documents/in/Silica">Silica</a>, <script data-card-contents-for-ri="98440" type="text/json">{"id":98440,"name":"Silica","url":"https://www.academia.edu/Documents/in/Silica?f_ri=966213","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="260118" href="https://www.academia.edu/Documents/in/CHEMICAL_SCIENCES">CHEMICAL SCIENCES</a>, <script data-card-contents-for-ri="260118" type="text/json">{"id":260118,"name":"CHEMICAL SCIENCES","url":"https://www.academia.edu/Documents/in/CHEMICAL_SCIENCES?f_ri=966213","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="349105" href="https://www.academia.edu/Documents/in/Polyethylene_Glycol">Polyethylene Glycol</a><script data-card-contents-for-ri="349105" type="text/json">{"id":349105,"name":"Polyethylene Glycol","url":"https://www.academia.edu/Documents/in/Polyethylene_Glycol?f_ri=966213","nofollow":false}</script></span></li><script>(function(){ if (true) { new Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=47189607]'), work: {"id":47189607,"title":"Rheological behavior of hydrophilic silica dispersion in polyethylene glycol","created_at":"2021-04-21T05:22:46.099-07:00","url":"https://www.academia.edu/47189607/Rheological_behavior_of_hydrophilic_silica_dispersion_in_polyethylene_glycol?f_ri=966213","dom_id":"work_47189607","summary":null,"downloadable_attachments":[{"id":66414177,"asset_id":47189607,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":184712880,"first_name":"Dong-hee","last_name":"Han","domain_name":"independent","page_name":"DongheeHan8","display_name":"Dong-hee Han","profile_url":"https://independent.academia.edu/DongheeHan8?f_ri=966213","photo":"/images/s65_no_pic.png"}],"research_interests":[{"id":48,"name":"Engineering","url":"https://www.academia.edu/Documents/in/Engineering?f_ri=966213","nofollow":false},{"id":98440,"name":"Silica","url":"https://www.academia.edu/Documents/in/Silica?f_ri=966213","nofollow":false},{"id":260118,"name":"CHEMICAL SCIENCES","url":"https://www.academia.edu/Documents/in/CHEMICAL_SCIENCES?f_ri=966213","nofollow":false},{"id":349105,"name":"Polyethylene Glycol","url":"https://www.academia.edu/Documents/in/Polyethylene_Glycol?f_ri=966213","nofollow":false},{"id":966213,"name":"Journal of Applied Polymer Science","url":"https://www.academia.edu/Documents/in/Journal_of_Applied_Polymer_Science?f_ri=966213"}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_31931356" data-work_id="31931356" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/31931356/Phenol_formaldehyde_pyrolytic_oil_resins_for_wood_preservation_A_rheological_study">Phenol–formaldehyde–pyrolytic oil resins for wood preservation: A rheological study</a></div></div><div class="u-pb4x u-mt3x"></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/31931356" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="e2be162e7f9eb18b4b9d153200391e87" rel="nofollow" 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window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-percentile-work_31931356"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></li><li class="js-view-count-work_31931356 InlineList-item InlineList-item--bordered hidden"><div><span><span class="js-view-count view-count u-mr2x" data-work-id="31931356"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 31931356; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=31931356]").text(description); $(".js-view-count-work_31931356").attr('title', description).tooltip(); }); });</script></span><script>$(function() { $(".js-view-count-work_31931356").removeClass('hidden') })</script></div></li><li class="InlineList-item u-positionRelative" style="max-width: 250px"><div class="u-positionAbsolute" data-has-card-for-ri-list="31931356"><i class="fa fa-tag InlineList-item-icon u-positionRelative"></i> <a class="InlineList-item-text u-positionRelative">10</a> </div><span class="InlineList-item-text u-textTruncate u-pl10x"><a class="InlineList-item-text" data-has-card-for-ri="48" href="https://www.academia.edu/Documents/in/Engineering">Engineering</a>, <script data-card-contents-for-ri="48" type="text/json">{"id":48,"name":"Engineering","url":"https://www.academia.edu/Documents/in/Engineering?f_ri=966213","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="4987" href="https://www.academia.edu/Documents/in/Kinetics">Kinetics</a>, <script data-card-contents-for-ri="4987" type="text/json">{"id":4987,"name":"Kinetics","url":"https://www.academia.edu/Documents/in/Kinetics?f_ri=966213","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="6177" href="https://www.academia.edu/Documents/in/Modeling">Modeling</a>, <script data-card-contents-for-ri="6177" type="text/json">{"id":6177,"name":"Modeling","url":"https://www.academia.edu/Documents/in/Modeling?f_ri=966213","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="7598" href="https://www.academia.edu/Documents/in/Rheology">Rheology</a><script data-card-contents-for-ri="7598" type="text/json">{"id":7598,"name":"Rheology","url":"https://www.academia.edu/Documents/in/Rheology?f_ri=966213","nofollow":false}</script></span></li><script>(function(){ if (true) { new Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=31931356]'), work: {"id":31931356,"title":"Phenol–formaldehyde–pyrolytic oil resins for wood preservation: A rheological study","created_at":"2017-03-19T08:24:25.677-07:00","url":"https://www.academia.edu/31931356/Phenol_formaldehyde_pyrolytic_oil_resins_for_wood_preservation_A_rheological_study?f_ri=966213","dom_id":"work_31931356","summary":null,"downloadable_attachments":[{"id":52210267,"asset_id":31931356,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":61525767,"first_name":"Christian","last_name":"Roy","domain_name":"independent","page_name":"ChristianRoy12","display_name":"Christian Roy","profile_url":"https://independent.academia.edu/ChristianRoy12?f_ri=966213","photo":"/images/s65_no_pic.png"}],"research_interests":[{"id":48,"name":"Engineering","url":"https://www.academia.edu/Documents/in/Engineering?f_ri=966213","nofollow":false},{"id":4987,"name":"Kinetics","url":"https://www.academia.edu/Documents/in/Kinetics?f_ri=966213","nofollow":false},{"id":6177,"name":"Modeling","url":"https://www.academia.edu/Documents/in/Modeling?f_ri=966213","nofollow":false},{"id":7598,"name":"Rheology","url":"https://www.academia.edu/Documents/in/Rheology?f_ri=966213","nofollow":false},{"id":147640,"name":"Activation Energy","url":"https://www.academia.edu/Documents/in/Activation_Energy?f_ri=966213"},{"id":260118,"name":"CHEMICAL SCIENCES","url":"https://www.academia.edu/Documents/in/CHEMICAL_SCIENCES?f_ri=966213"},{"id":263097,"name":"Application","url":"https://www.academia.edu/Documents/in/Application?f_ri=966213"},{"id":966213,"name":"Journal of Applied Polymer Science","url":"https://www.academia.edu/Documents/in/Journal_of_Applied_Polymer_Science?f_ri=966213"},{"id":1030027,"name":"Softwood","url":"https://www.academia.edu/Documents/in/Softwood?f_ri=966213"},{"id":2201817,"name":"Polycondensation","url":"https://www.academia.edu/Documents/in/Polycondensation?f_ri=966213"}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_3558359" data-work_id="3558359" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/3558359/13C_NMR_study_ofDipteryx_Alata_Vogel_starch">13C-NMR study ofDipteryx Alata Vogel starch</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">Natural starches obtained by fruit seeds have been a subject of studies because of their applications, as a consequence of their chemical properties. As it is known, the fruits depend on the geographic region. Because of this, several... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_3558359" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">Natural starches obtained by fruit seeds have been a subject of studies because of their applications, as a consequence of their chemical properties. As it is known, the fruits depend on the geographic region. Because of this, several factors affect the seed starches nature, such as granules size, morphology, components, and composition. Thus, to better understand starch properties, it is necessary to investigate the chemical behavior of these factors. This work focused on the chemical components and molecular dynamic behavior of the Dipterxy Alata Vogel (cumbaru) starch, because this fruit is very popular and is used in abundance for people because they think that it is good for some kinds of diseases. The main chemical components and the molecular dynamics of starch from the Dipterxy Alata Vogel were studied by applying solid-state 13C nuclear magnetic resonance spectroscopy (NMR). © 2004 Wiley Periodicals, Inc. J Appl Polym Sci 92: 2151–2154, 2004</div></div></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/3558359" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="324982b78f5b24d57bd34eaad05eed4d" rel="nofollow" data-download="{"attachment_id":50231099,"asset_id":3558359,"asset_type":"Work","always_allow_download":false,"track":null,"button_location":"work_strip","source":null,"hide_modal":null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/50231099/download_file?st=MTczMjgyMjM3OCw4LjIyMi4yMDguMTQ2&s=work_strip"><i class="fa fa-arrow-circle-o-down fa-lg"></i><span class="u-textUppercase u-ml1x" data-content="button_text">Download</span></a></div></li><li class="InlineList-item"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by <span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="4227038" href="https://independent.academia.edu/EmersonSilva3">Emerson Silva</a><script data-card-contents-for-user="4227038" type="text/json">{"id":4227038,"first_name":"Emerson","last_name":"Silva","domain_name":"independent","page_name":"EmersonSilva3","display_name":"Emerson Silva","profile_url":"https://independent.academia.edu/EmersonSilva3?f_ri=966213","photo":"https://0.academia-photos.com/4227038/1667762/9754085/s65_emerson.silva.jpg"}</script></span></span></li><li class="js-paper-rank-work_3558359 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="3558359"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 3558359, container: ".js-paper-rank-work_3558359", }); });</script></li><li class="js-percentile-work_3558359 InlineList-item InlineList-item--bordered hidden u-tcGrayDark"><span class="percentile-widget hidden"><span class="u-mr2x percentile-widget" style="display: none">•</span><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 3558359; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-percentile-work_3558359"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></li><li class="js-view-count-work_3558359 InlineList-item InlineList-item--bordered hidden"><div><span><span class="js-view-count view-count u-mr2x" data-work-id="3558359"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 3558359; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=3558359]").text(description); $(".js-view-count-work_3558359").attr('title', description).tooltip(); }); });</script></span><script>$(function() { $(".js-view-count-work_3558359").removeClass('hidden') })</script></div></li><li class="InlineList-item u-positionRelative" style="max-width: 250px"><div class="u-positionAbsolute" data-has-card-for-ri-list="3558359"><i class="fa fa-tag InlineList-item-icon u-positionRelative"></i> <a class="InlineList-item-text u-positionRelative">5</a> </div><span class="InlineList-item-text u-textTruncate u-pl9x"><a class="InlineList-item-text" data-has-card-for-ri="48" href="https://www.academia.edu/Documents/in/Engineering">Engineering</a>, <script data-card-contents-for-ri="48" type="text/json">{"id":48,"name":"Engineering","url":"https://www.academia.edu/Documents/in/Engineering?f_ri=966213","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="96502" href="https://www.academia.edu/Documents/in/Applied">Applied</a>, <script data-card-contents-for-ri="96502" type="text/json">{"id":96502,"name":"Applied","url":"https://www.academia.edu/Documents/in/Applied?f_ri=966213","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="114941" href="https://www.academia.edu/Documents/in/Nmr">Nmr</a>, <script data-card-contents-for-ri="114941" type="text/json">{"id":114941,"name":"Nmr","url":"https://www.academia.edu/Documents/in/Nmr?f_ri=966213","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="260118" href="https://www.academia.edu/Documents/in/CHEMICAL_SCIENCES">CHEMICAL SCIENCES</a><script data-card-contents-for-ri="260118" type="text/json">{"id":260118,"name":"CHEMICAL SCIENCES","url":"https://www.academia.edu/Documents/in/CHEMICAL_SCIENCES?f_ri=966213","nofollow":false}</script></span></li><script>(function(){ if (true) { new Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=3558359]'), work: {"id":3558359,"title":"13C-NMR study ofDipteryx Alata Vogel starch","created_at":"2013-05-18T08:18:46.629-07:00","url":"https://www.academia.edu/3558359/13C_NMR_study_ofDipteryx_Alata_Vogel_starch?f_ri=966213","dom_id":"work_3558359","summary":"Natural starches obtained by fruit seeds have been a subject of studies because of their applications, as a consequence of their chemical properties. As it is known, the fruits depend on the geographic region. Because of this, several factors affect the seed starches nature, such as granules size, morphology, components, and composition. Thus, to better understand starch properties, it is necessary to investigate the chemical behavior of these factors. This work focused on the chemical components and molecular dynamic behavior of the Dipterxy Alata Vogel (cumbaru) starch, because this fruit is very popular and is used in abundance for people because they think that it is good for some kinds of diseases. The main chemical components and the molecular dynamics of starch from the Dipterxy Alata Vogel were studied by applying solid-state 13C nuclear magnetic resonance spectroscopy (NMR). © 2004 Wiley Periodicals, Inc. J Appl Polym Sci 92: 2151–2154, 2004","downloadable_attachments":[{"id":50231099,"asset_id":3558359,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":4227038,"first_name":"Emerson","last_name":"Silva","domain_name":"independent","page_name":"EmersonSilva3","display_name":"Emerson Silva","profile_url":"https://independent.academia.edu/EmersonSilva3?f_ri=966213","photo":"https://0.academia-photos.com/4227038/1667762/9754085/s65_emerson.silva.jpg"}],"research_interests":[{"id":48,"name":"Engineering","url":"https://www.academia.edu/Documents/in/Engineering?f_ri=966213","nofollow":false},{"id":96502,"name":"Applied","url":"https://www.academia.edu/Documents/in/Applied?f_ri=966213","nofollow":false},{"id":114941,"name":"Nmr","url":"https://www.academia.edu/Documents/in/Nmr?f_ri=966213","nofollow":false},{"id":260118,"name":"CHEMICAL SCIENCES","url":"https://www.academia.edu/Documents/in/CHEMICAL_SCIENCES?f_ri=966213","nofollow":false},{"id":966213,"name":"Journal of Applied Polymer Science","url":"https://www.academia.edu/Documents/in/Journal_of_Applied_Polymer_Science?f_ri=966213"}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_3749979" data-work_id="3749979" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/3749979/Degradation_of_a_poly_ester_urethane_elastomer_I_Absorption_and_diffusion_of_water_in_Estane_5703_and_related_polymers">Degradation of a poly(ester urethane) elastomer. I. Absorption and diffusion of water in Estane� 5703 and related polymers</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">In preparation for studying the hydrolytic degradation of Estane® 5703 and related poly(ester urethane) elastomers, the absorption (solubility) and diffusion of water in these polymers have been examined experimentally and modeled... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_3749979" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">In preparation for studying the hydrolytic degradation of Estane® 5703 and related poly(ester urethane) elastomers, the absorption (solubility) and diffusion of water in these polymers have been examined experimentally and modeled theoretically. Weight gain and loss experiments have been carried out. The amount of water absorbed per gram of sample was linear at low relative humidities (RHs) but curved upward at higher RHs. This curvature was not fit by Henry's law or the Flory–Huggins equation but was easily fit by a water-cluster model. Diffusion coefficients were determined by fitting the time dependence of the sample weights, and the diffusion appeared Fickian to within experimental uncertainty. The similarity of related polymers was used to determine the approximate temperature dependence of the absorption. © 2001 John Wiley & Sons, Inc. J Polym Sci Part B: Polym Phys 40: 181–191, 2002</div></div></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/3749979" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="58e6e16c9b033f74618b397b610c8e35" rel="nofollow" data-download="{"attachment_id":50148169,"asset_id":3749979,"asset_type":"Work","always_allow_download":false,"track":null,"button_location":"work_strip","source":null,"hide_modal":null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/50148169/download_file?st=MTczMjgyMjM3OCw4LjIyMi4yMDguMTQ2&s=work_strip"><i class="fa fa-arrow-circle-o-down fa-lg"></i><span class="u-textUppercase u-ml1x" data-content="button_text">Download</span></a></div></li><li class="InlineList-item"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by <span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="4602342" href="https://independent.academia.edu/MichaelSalazar">Michael Salazar</a><script data-card-contents-for-user="4602342" type="text/json">{"id":4602342,"first_name":"Michael","last_name":"Salazar","domain_name":"independent","page_name":"MichaelSalazar","display_name":"Michael Salazar","profile_url":"https://independent.academia.edu/MichaelSalazar?f_ri=966213","photo":"https://0.academia-photos.com/4602342/1919584/2273479/s65_michael.salazar.jpg"}</script></span></span></li><li class="js-paper-rank-work_3749979 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="3749979"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 3749979, container: ".js-paper-rank-work_3749979", }); });</script></li><li class="js-percentile-work_3749979 InlineList-item InlineList-item--bordered hidden u-tcGrayDark"><span class="percentile-widget hidden"><span class="u-mr2x percentile-widget" style="display: none">•</span><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 3749979; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-percentile-work_3749979"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></li><li class="js-view-count-work_3749979 InlineList-item InlineList-item--bordered hidden"><div><span><span class="js-view-count view-count u-mr2x" data-work-id="3749979"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 3749979; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=3749979]").text(description); $(".js-view-count-work_3749979").attr('title', description).tooltip(); }); });</script></span><script>$(function() { $(".js-view-count-work_3749979").removeClass('hidden') })</script></div></li><li class="InlineList-item u-positionRelative" style="max-width: 250px"><div class="u-positionAbsolute" data-has-card-for-ri-list="3749979"><i class="fa fa-tag InlineList-item-icon u-positionRelative"></i> <a class="InlineList-item-text u-positionRelative">10</a> </div><span class="InlineList-item-text u-textTruncate u-pl10x"><a class="InlineList-item-text" data-has-card-for-ri="48" href="https://www.academia.edu/Documents/in/Engineering">Engineering</a>, <script data-card-contents-for-ri="48" type="text/json">{"id":48,"name":"Engineering","url":"https://www.academia.edu/Documents/in/Engineering?f_ri=966213","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="56" href="https://www.academia.edu/Documents/in/Materials_Engineering">Materials Engineering</a>, <script data-card-contents-for-ri="56" type="text/json">{"id":56,"name":"Materials Engineering","url":"https://www.academia.edu/Documents/in/Materials_Engineering?f_ri=966213","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="4987" href="https://www.academia.edu/Documents/in/Kinetics">Kinetics</a>, <script data-card-contents-for-ri="4987" type="text/json">{"id":4987,"name":"Kinetics","url":"https://www.academia.edu/Documents/in/Kinetics?f_ri=966213","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="6177" href="https://www.academia.edu/Documents/in/Modeling">Modeling</a><script data-card-contents-for-ri="6177" type="text/json">{"id":6177,"name":"Modeling","url":"https://www.academia.edu/Documents/in/Modeling?f_ri=966213","nofollow":false}</script></span></li><script>(function(){ if (true) { new Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=3749979]'), work: {"id":3749979,"title":"Degradation of a poly(ester urethane) elastomer. I. Absorption and diffusion of water in Estane� 5703 and related polymers","created_at":"2013-06-20T01:22:26.779-07:00","url":"https://www.academia.edu/3749979/Degradation_of_a_poly_ester_urethane_elastomer_I_Absorption_and_diffusion_of_water_in_Estane_5703_and_related_polymers?f_ri=966213","dom_id":"work_3749979","summary":"In preparation for studying the hydrolytic degradation of Estane® 5703 and related poly(ester urethane) elastomers, the absorption (solubility) and diffusion of water in these polymers have been examined experimentally and modeled theoretically. Weight gain and loss experiments have been carried out. The amount of water absorbed per gram of sample was linear at low relative humidities (RHs) but curved upward at higher RHs. This curvature was not fit by Henry's law or the Flory–Huggins equation but was easily fit by a water-cluster model. Diffusion coefficients were determined by fitting the time dependence of the sample weights, and the diffusion appeared Fickian to within experimental uncertainty. The similarity of related polymers was used to determine the approximate temperature dependence of the absorption. © 2001 John Wiley \u0026 Sons, Inc. J Polym Sci Part B: Polym Phys 40: 181–191, 2002","downloadable_attachments":[{"id":50148169,"asset_id":3749979,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":4602342,"first_name":"Michael","last_name":"Salazar","domain_name":"independent","page_name":"MichaelSalazar","display_name":"Michael Salazar","profile_url":"https://independent.academia.edu/MichaelSalazar?f_ri=966213","photo":"https://0.academia-photos.com/4602342/1919584/2273479/s65_michael.salazar.jpg"}],"research_interests":[{"id":48,"name":"Engineering","url":"https://www.academia.edu/Documents/in/Engineering?f_ri=966213","nofollow":false},{"id":56,"name":"Materials Engineering","url":"https://www.academia.edu/Documents/in/Materials_Engineering?f_ri=966213","nofollow":false},{"id":4987,"name":"Kinetics","url":"https://www.academia.edu/Documents/in/Kinetics?f_ri=966213","nofollow":false},{"id":6177,"name":"Modeling","url":"https://www.academia.edu/Documents/in/Modeling?f_ri=966213","nofollow":false},{"id":58527,"name":"Polymer","url":"https://www.academia.edu/Documents/in/Polymer?f_ri=966213"},{"id":96502,"name":"Applied","url":"https://www.academia.edu/Documents/in/Applied?f_ri=966213"},{"id":163878,"name":"Degradation","url":"https://www.academia.edu/Documents/in/Degradation?f_ri=966213"},{"id":260118,"name":"CHEMICAL SCIENCES","url":"https://www.academia.edu/Documents/in/CHEMICAL_SCIENCES?f_ri=966213"},{"id":966213,"name":"Journal of Applied Polymer Science","url":"https://www.academia.edu/Documents/in/Journal_of_Applied_Polymer_Science?f_ri=966213"},{"id":1030794,"name":"Hydrolysis","url":"https://www.academia.edu/Documents/in/Hydrolysis?f_ri=966213"}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_6597314" data-work_id="6597314" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/6597314/Poly_ethylene_glycol_%CE%B2_cyclodextrin_gels_Synthesis_and_properties">Poly(ethylene glycol-β-cyclodextrin) gels: Synthesis and properties</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">A new hydrogel that combines poly(ethylene glycol) and β-cyclodextrin has been synthesized. Both components are linked by using a diisocyanate (HDMI), first by end-capping the poly(ethylene glycol) with isocyanate groups an then reacting... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_6597314" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">A new hydrogel that combines poly(ethylene glycol) and β-cyclodextrin has been synthesized. Both components are linked by using a diisocyanate (HDMI), first by end-capping the poly(ethylene glycol) with isocyanate groups an then reacting it with β-cyclodextrin, forming urethane links. Hydrogels of molar compositions (β-cyclodextrin/poly(ethylene glycol)) ranging from 1/4 to 1/14 have been synthesized. These hydrogels swell quickly and their water contents depend upon temperature. The gels are temperature resistant and show an elastomeric behavior. © 2006 Wiley Periodicals, Inc. J Appl Polym Sci 102: 1162–1166, 2006</div></div></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/6597314" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="d683dcf7690eeeb5702cebf59d069424" rel="nofollow" data-download="{"attachment_id":48789033,"asset_id":6597314,"asset_type":"Work","always_allow_download":false,"track":null,"button_location":"work_strip","source":null,"hide_modal":null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/48789033/download_file?st=MTczMjgyMjM3OCw4LjIyMi4yMDguMTQ2&s=work_strip"><i class="fa fa-arrow-circle-o-down fa-lg"></i><span class="u-textUppercase u-ml1x" data-content="button_text">Download</span></a></div></li><li class="InlineList-item"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by <span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="10642571" href="https://independent.academia.edu/CamiloRamirez5">Camilo Ramirez</a><script data-card-contents-for-user="10642571" type="text/json">{"id":10642571,"first_name":"Camilo","last_name":"Ramirez","domain_name":"independent","page_name":"CamiloRamirez5","display_name":"Camilo Ramirez","profile_url":"https://independent.academia.edu/CamiloRamirez5?f_ri=966213","photo":"/images/s65_no_pic.png"}</script></span></span></li><li class="js-paper-rank-work_6597314 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="6597314"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 6597314, container: ".js-paper-rank-work_6597314", }); 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Both components are linked by using a diisocyanate (HDMI), first by end-capping the poly(ethylene glycol) with isocyanate groups an then reacting it with β-cyclodextrin, forming urethane links. Hydrogels of molar compositions (β-cyclodextrin/poly(ethylene glycol)) ranging from 1/4 to 1/14 have been synthesized. These hydrogels swell quickly and their water contents depend upon temperature. The gels are temperature resistant and show an elastomeric behavior. © 2006 Wiley Periodicals, Inc. J Appl Polym Sci 102: 1162–1166, 2006","downloadable_attachments":[{"id":48789033,"asset_id":6597314,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":10642571,"first_name":"Camilo","last_name":"Ramirez","domain_name":"independent","page_name":"CamiloRamirez5","display_name":"Camilo Ramirez","profile_url":"https://independent.academia.edu/CamiloRamirez5?f_ri=966213","photo":"/images/s65_no_pic.png"}],"research_interests":[{"id":48,"name":"Engineering","url":"https://www.academia.edu/Documents/in/Engineering?f_ri=966213","nofollow":false},{"id":22442,"name":"Hydrogels","url":"https://www.academia.edu/Documents/in/Hydrogels?f_ri=966213","nofollow":false},{"id":96502,"name":"Applied","url":"https://www.academia.edu/Documents/in/Applied?f_ri=966213","nofollow":false},{"id":260118,"name":"CHEMICAL SCIENCES","url":"https://www.academia.edu/Documents/in/CHEMICAL_SCIENCES?f_ri=966213","nofollow":false},{"id":394514,"name":"Poly Ethylene 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href="https://www.academia.edu/11040340/Alkaline_treatment_of_cotton_in_different_reagent_mixtures_with_reduced_water_content_I_Influence_of_alkali_type_and_additives">Alkaline treatment of cotton in different reagent mixtures with reduced water content. I. Influence of alkali type and additives</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">The purpose of this study was to examine the influence of some swelling agents with reduced water content on final properties of cotton fabrics. A single-step swelling of cotton in the reagent was used. There were selected properties... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_11040340" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">The purpose of this study was to examine the influence of some swelling agents with reduced water content on final properties of cotton fabrics. A single-step swelling of cotton in the reagent was used. There were selected properties generally used to characterize mercerized cotton that are technologically important, such as water retention, shrinkage, stiffness, crease recovery angle, and hand. Water retention method and dyeing with CI Direct Red 81 have been used to compare the degree of swelling for different samples. Correlations have been established between structural changes induced by the swelling agents and final properties of cotton fabric. The mixtures of an alkali solution and an additive produced similar or better end-use properties as compared with classical sodium hydroxide or ammonia treatments, combining the action of a diluted alkali solution (3.13 mol/L NaOH or KOH) and a nonalkali reagent. © 2005 Wiley Periodicals, Inc. 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The mixtures of an alkali solution and an additive produced similar or better end-use properties as compared with classical sodium hydroxide or ammonia treatments, combining the action of a diluted alkali solution (3.13 mol/L NaOH or KOH) and a nonalkali reagent. © 2005 Wiley Periodicals, Inc. 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