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<div class="row"> <div class="info-row-name normal-text-gray col-md-2 col-sm-3 col-xs-4"> <div class="row"> <p>DOI:</p> </div> </div> <div class="info-row-content semibold-middle-text col-md-10 col-sm-9 col-xs-8"> <div class="row"> <p><a href="https://doi.org/10.4028/www.scientific.net/DDF.382">https://doi.org/10.4028/www.scientific.net/DDF.382</a></p> </div> </div> </div> </div> <div id="titleMarcXmlLink" style="display: none" class="papers-block-info col-lg-12"> <div class="row"> <div class="info-row-name normal-text-gray col-md-2 col-sm-3 col-xs-4"> <div class="row"> <p>Export:</p> </div> </div> <div class="info-row-content semibold-middle-text col-md-10 col-sm-9 col-xs-8"> <div class="row"> <p><a href="/DDF.382/marc.xml">MARCXML</a></p> </div> </div> </div> </div> <div class="papers-block-info col-lg-12"> <div class="row"> <div class="info-row-name normal-text-gray col-md-2 col-sm-3 col-xs-4"> <div class="row"> <p>ToC:</p> </div> </div> <div class="info-row-content semibold-middle-text col-md-10 col-sm-9 col-xs-8"> <div class="row"> <p><a href="/DDF.382_toc.pdf">Table of Contents</a></p> </div> </div> </div> </div> </div> <div class="volume-tabs"> </div> <div class=""> <div class="volume-papers-page"> <div class="block-search-pagination clearfix"> <div class="block-search-volume"> <input id="paper-search" type="search" placeholder="Search" maxlength="65"> </div> <div class="pagination-container"><ul class="pagination"><li class="PagedList-skipToFirst"><a href="/DDF.382"><<</a></li><li class="PagedList-skipToPrevious"><a href="/DDF.382/6" rel="prev"><</a></li><li class="PagedList-ellipses"><a class="PagedList-skipToPrevious" href="/DDF.382/2" rel="prev">…</a></li><li><a href="/DDF.382/3">3</a></li><li><a href="/DDF.382/4">4</a></li><li><a href="/DDF.382/5">5</a></li><li><a href="/DDF.382/6">6</a></li><li class="active"><span>7</span></li></ul></div> </div> <div class="block-volume-title normal-text-gray"> <p> Paper Title <span>Page</span> </p> </div> <div class="item-block"> <div class="item-link"> <a href="/DDF.382.352">The Utilization of Ground Tire Rubber as Ion Exchange Materials</a> </div> <div class="item-link volume-authors"> <div class="semibold-middle-text"> Authors: Supitcha Rungrodnimitchai, Sirinapa Mayod, Sutamma Tanasarn </div> </div> <div id="abstractTextBlock529699" class="volume-info volume-info-text volume-info-description"> Abstract: In this study, ground tire rubber (R-GTR) with the average particle size of 456 µm was chemically modified to produce modified ground tire rubber (M-GTR) that can work as ion exchange materials. The modification was performed by oxidation reaction. The ground tire rubber was oxidized at the range of temperature from 20 to 40<sup>๐</sup>C for 48, 72 and 96 hours by a mixture of the HNO<sub>3</sub> /H<sub>3</sub>PO<sub>4</sub>/NaNO<sub>2</sub> system. The HNO<sub>3</sub>/H<sub>3</sub>PO<sub>4</sub> ratio was 1:3 and the concentration of NaNO<sub>2</sub> was 1.4% w/v. FT-IR revealed that the carboxyl group or the carbonyl group was successfully introduced into the modified ground tire rubber and SEM images demonstrated that the porosity of modified ground tire rubber increased. The results of the modified ground tire rubber showed that the carboxyl content increased with an increase of reaction time while %yield decreased with an increase of reaction time. The optimum condition for modification was the reaction at 30<sup>๐</sup>C for 96 hours. </div> <div> <a data-readmore="{ block: '#abstractTextBlock529699', lines: 2, expandText: '...more', collapseText: '...less' }"></a> </div> <div class="page-number semibold-large-text"> 352 </div> </div> <div class="item-block"> <div class="item-link"> <a href="/DDF.382.359">A Varied Alkyl Chains of Ruthenium(II) Complexes for Dye Sensitized Solar Cells (DSSCs)</a> </div> <div class="item-link volume-authors"> <div class="semibold-middle-text"> Authors: Chonchanok Talodthaisong, Kittiya Wongkhan, Rukkiat Jitchati </div> </div> <div id="abstractTextBlock529603" class="volume-info volume-info-text volume-info-description"> Abstract: Ruthenium(II) complexes were synthesized and characterized for dye-sensitized solar cells (DSSCs) with varied alkyl chains specifically methyl (PC01), hexyl (PC02) and octyl (PC03). The photophysical property was studied by UV-Visible absorption. The results showed that the main absorption peaks were asigned to the metal to ligand charge transfer (MLCT) transition (350-600 nm). The incident photon to current conversion efficiency (IPCE) covered the entire visible spectrum reaching to 18-20% at 520 nm. The DSSC performances were investigated with liquid iodide/tri-iodide electrolyte under standard AM 1.5. PC01-PC03 showed that the power conversion efficiency (h) were obtained at 3.08%, 3.18% and 3.14%, respectively, compared with N719 (7.80%). Interestingly, PC02 and PC03 showed the long term stability with %h<sub>loss</sub> better than the standard up to 1000 h. </div> <div> <a data-readmore="{ block: '#abstractTextBlock529603', lines: 2, expandText: '...more', collapseText: '...less' }"></a> </div> <div class="page-number semibold-large-text"> 359 </div> </div> <div class="item-block"> <div class="item-link"> <a href="/DDF.382.364">Synthesis and Electrical Conductivity of N-(3-(Trifluoromethyl)Benzylidine)Thiosemicarbazide towards Dyes Sensitized Solar Cell</a> </div> <div class="item-link volume-authors"> <div class="semibold-middle-text"> Authors: Uwaisulqarni M. Osman, Azieda Syafika N. Farizal, Nurhayati Ishak, Mohd Hasmizam Razali, M.I.N. Isa </div> </div> <div id="abstractTextBlock529852" class="volume-info volume-info-text volume-info-description"> Abstract: Organic compound containing thiosemicarbazide moiety has been successfully synthesized. The new synthesized dyes, N-(3-(Trifluoromethylbenzaldehyde)benzylidine thiosemi- carbazide (3-TFT) was characterized by spectroscopic technique namely, CHNS elemental analysis, Fourier Transform Infra-Red analysis (FT-IR), UV-Visible analysis (UV-Vis), <sup>1</sup>H and <sup>13</sup>C Nuclear Magnetic Resonance (NMR). The thin films of this dye have been prepared using a spin coating technique and deposited on indium tin oxide (ITO) glass substrate. The main highlight was an electrical conductivity of thin films which was measured using four point probing system in a range of light intensity, 25 Wm<sup>-2</sup> until 200Wm<sup>-2</sup>. The potential electrical conductivity of 3-TFT dye was found gradually increased until reached the maximum conductivity values of 0.1489 Scm<sup>-1</sup> at light intensity of 100 Wm<sup>-2</sup> in the most diluted concentration at 1x10<sup>-5</sup>M. </div> <div> <a data-readmore="{ block: '#abstractTextBlock529852', lines: 2, expandText: '...more', collapseText: '...less' }"></a> </div> <div class="page-number semibold-large-text"> 364 </div> </div> <div class="item-block"> <div class="item-link"> <a href="/DDF.382.369">Thiocyanate Free Ruthenium(II) Complexes for Dye Sensitized Solar Cells (DSSCs)</a> </div> <div class="item-link volume-authors"> <div class="semibold-middle-text"> Authors: Usana Mahanitipong, Preeyapat Prompan, Rukkiat Jitchati </div> </div> <div id="abstractTextBlock529600" class="volume-info volume-info-text volume-info-description"> Abstract: The four thiocyanate free ruthenium(II) complexes; [Ru(N^N)<sub>2</sub>(C^N)]PF<sub>6</sub> were synthesized and characterized for dye sensitized solar cells (DSSCs). The results showed that the broad absorptions covered the visible region from metal to ligand charge transfer (MLCT) were obtained with the main peaks at 560, 490 and 400 nm. The materials were studied DSSC performance under standard AM 1.5. Compound PP1 showed the power conversion efficiency (PCE) at 3.10%, with a short-circuit photocurrent density (J<sub>sc</sub>) of 7.99 mA cm<sup>-2</sup>, an open-circuit photovoltage (V<sub>oc</sub>) of 563 mV and a high fill factor (ff) of 0.690. </div> <div> <a data-readmore="{ block: '#abstractTextBlock529600', lines: 2, expandText: '...more', collapseText: '...less' }"></a> </div> <div class="page-number semibold-large-text"> 369 </div> </div> <div class="item-block"> <div class="item-link"> <a href="/DDF.382.374">Experimental Studies of Fire from CIGS Thin Film Solar Module Back</a> </div> <div class="item-link volume-authors"> <div class="semibold-middle-text"> Authors: Lu Lu Yin, Yong Jiang, Rong Qiu </div> </div> <div id="abstractTextBlock529594" class="volume-info volume-info-text volume-info-description"> Abstract: With the building integrated photovoltaic commonly using in residential and commercial buildings, fire researches about this new renewable energy system are still insufficient. Electrical failure may bring local fever at the backside of the module. In order to investigate fire potential in this situation, bench-scale experiments based on the cone calorimeter are conducted with different external heat flux from 20 to 45kWm-2 at intervals of 5 kWm-2. This paper focuses on the thermal properties and combustion behaviors of copper–indium–gallium–diselenide (CIGS) thin-film solar module, and also discusses the gas toxicity. </div> <div> <a data-readmore="{ block: '#abstractTextBlock529594', lines: 2, expandText: '...more', collapseText: '...less' }"></a> </div> <div class="page-number semibold-large-text"> 374 </div> </div> <div class="block-bottom-pagination"> <div class="pager-info"> <p>Showing 61 to 65 of 65 Paper Titles</p> </div> <div class="pagination-container"><ul class="pagination"><li class="PagedList-skipToFirst"><a href="/DDF.382"><<</a></li><li class="PagedList-skipToPrevious"><a href="/DDF.382/6" rel="prev"><</a></li><li class="PagedList-ellipses"><a class="PagedList-skipToPrevious" href="/DDF.382/2" rel="prev">…</a></li><li><a href="/DDF.382/3">3</a></li><li><a href="/DDF.382/4">4</a></li><li><a href="/DDF.382/5">5</a></li><li><a href="/DDF.382/6">6</a></li><li class="active"><span>7</span></li></ul></div> </div> </div> </div> </div> </div> </div> </div> <div class="social-icon-popup"> <a href="https://www.facebook.com/Scientific.Net.Ltd/" target="_blank" rel="noopener" title="Scientific.Net"><i class="inline-icon facebook-popup-icon social-icon"></i></a> <a href="https://twitter.com/Scientific_Net/" target="_blank" rel="noopener" title="Scientific.Net"><i class="inline-icon twitter-popup-icon social-icon"></i></a> <a href="https://www.linkedin.com/company/scientificnet/" target="_blank" rel="noopener" title="Scientific.Net"><i class="inline-icon linkedin-popup-icon social-icon"></i></a> </div> </div> <div class="sc-footer"> <div class="footer-fluid"> <div class="container"> <div class="row"> <div class="footer-menu col-md-12 col-sm-12 col-xs-12"> <ul class="list-inline menu-font"> <li><a href="/ForLibraries">For Libraries</a></li> <li><a href="/ForPublication/Paper">For Publication</a></li> <li><a href="/insights" target="_blank">Insights</a></li> <li><a href="/DocuCenter">Downloads</a></li> <li><a href="/Home/AboutUs">About Us</a></li> <li><a href="/PolicyAndEthics/PublishingPolicies">Policy & Ethics</a></li> <li><a href="/Home/Contacts">Contact Us</a></li> <li><a href="/Home/Imprint">Imprint</a></li> <li><a href="/Home/PrivacyPolicy">Privacy Policy</a></li> <li><a href="/Home/Sitemap">Sitemap</a></li> <li><a href="/Conferences">All Conferences</a></li> <li><a href="/special-issues">All Special Issues</a></li> <li><a href="/news/all">All News</a></li> <li><a href="/read-and-publish-agreements">Read & Publish Agreements</a></li> </ul> </div> </div> </div> </div> <div class="line-footer"></div> <div class="footer-fluid"> <div class="container"> <div class="row"> <div class="col-xs-12"> <a href="https://www.facebook.com/Scientific.Net.Ltd/" target="_blank" rel="noopener" title="Scientific.Net"><i class="inline-icon facebook-footer-icon social-icon"></i></a> <a href="https://twitter.com/Scientific_Net/" target="_blank" rel="noopener" title="Scientific.Net"><i class="inline-icon twitter-footer-icon social-icon"></i></a> <a href="https://www.linkedin.com/company/scientificnet/" target="_blank" rel="noopener" title="Scientific.Net"><i class="inline-icon linkedin-footer-icon social-icon"></i></a> </div> </div> </div> </div> <div class="line-footer"></div> <div class="footer-fluid"> <div class="container"> <div class="row"> <div class="col-xs-12 footer-copyright"> <p> © 2024 Trans Tech Publications Ltd. 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