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Sakintuna, International Journal of Hydrogen Energy 32, 1121 (2007)." /> <meta name="citation_reference" content="J. -C. Crivello, R.V. Denys, M. e. a. Dornheim, Appl. Phys. A 122, 122 (2016)." /> <meta name="citation_reference" content="M. Daryani, A. e. a. Simchi, International Journal of Hydrogen Energy 39, 21007 (2014)." /> <meta name="citation_reference" content="E. Hadjixenophontos, M. Roussel, T. e. a. Sato, International Journal of Hydrogen Energy (2017)." /> <meta name="citation_reference" content="Pyun S. -I. & Yoon Y. -G, International Materials Reviews 45, 190 (2013)." /> <meta name="citation_reference" content="H.T. Uchida et al., Acta Materialia 85 (2015)." /> <meta name="citation_reference" content="A. Surrey, L. Schultz, B. Rellinghaus, Adv Struct Chem Imag 2, 526 (2017)." /> <meta name="citation_reference" content="R.R. Georg Job, Physical Chemistry from a Different Angle (2011)." /> <meta name="citation_reference" content="M. Paskevicius, D.A. Sheppard, C.E. Buckley, Journal of the American Chemical Society 132, 5077 (2010)." /> <meta name="citation_reference" content="A. San-Martin, F.D. Manchester, Bulletin of Alloy Phase Diagrams 8, 30 (1987)." /> <meta name="person" content="Efi Hadjixenophontos, Lukas Michalek, Andreas Weigel, Guido Schmitz" /> <meta name="description" content="The diffusion mechanism of H in metals and metal hydrides is studied particularly at high H2 pressures. Thin films of Mg and Ti offer a convenient tool to quantify the atomic transport. We show how different parameters of hydrogenation affect the kinetics. At 200°C, the Pd-Mg interface is predominant and a linear regime of hydrogenation is observed, whereas at 300°C a parabolic regime is detected. In Mg, the hydride forms from the surface to the substrate whereas in Ti growth of TiH2 starts from the substrate. A linear kinetics is seen during hydrogenation of Ti films, which is due to the oxide layer on top, measured to be about 10nm thick. In the studied high pressure regime, the hydrogenation is not pressure dependent any more. Quantitative calculation of the growth rate and the diffusion coefficient of H in the hydrides is presented." /> <meta name="keywords" content="Hydrogenation Kinetics, Linear Regime, MgH<sub>2</sub>, Pressure Dependence, TiH<sub>2</sub>" /> <meta name="copyright" content="2018 Trans Tech Publications Ltd. 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Thin...</span></div> <div class="page-name-block underline-begin"> <h1 class="page-name-block-text">Hydrogen Sorption Kinetics in MgH<sub>2</sub> and TiH<sub>2</sub> Thin Films</h1> </div> <div class="paper-statistics"> <div class="loading"> <i class="inline-icon download-and-visitor-statistics-icon"></i> <span class="normal-text" id="paperDownloadsAndVisitorsCount"></span> </div> </div> <div class="clearfix"></div> <div class="page-paper-title"> <div class="preview-block"> <img alt="Article Preview" width="128" height="180" src="/DDF.383.127/thumbnail.gif"> <div id="preview-button" data-url-preview-log="/Paper/PreviewImageLog?paperId=527688"> <i class="inline-icon preview-icon"></i> </div> <!--Modal window for article preview--> <div id="paper-preview-modal" class="modal fade"> <div class="modal-dialog" role="document"> <div class="popup-page-name underline-begin"> <div class="page-name-block-text">Article Preview</div> </div> <img alt="Article Preview" class="preview-image lazyload" data-src="/DDF.383.127/preview.gif"> <a data-dismiss="modal" title="Close" class="inline-icon close-icon"></a> </div> </div> <!--End modal--> </div> <div class="abstract-block-description"> <h3 class="page-paper-first-header">Abstract:</h3> <p class="normal-text"> The diffusion mechanism of H in metals and metal hydrides is studied particularly at high H<sub>2</sub> pressures. Thin films of Mg and Ti offer a convenient tool to quantify the atomic transport. We show how different parameters of hydrogenation affect the kinetics. At 200掳C, the Pd-Mg interface is predominant and a linear regime of hydrogenation is observed, whereas at 300掳C a parabolic regime is detected. In Mg, the hydride forms from the surface to the substrate whereas in Ti growth of TiH<sub>2</sub> starts from the substrate. A linear kinetics is seen during hydrogenation of Ti films, which is due to the oxide layer on top, measured to be about 10nm thick. In the studied high pressure regime, the hydrogenation is not pressure dependent any more. Quantitative calculation of the growth rate and the diffusion coefficient of H in the hydrides is presented. </p> </div> <div class="paper-access-buttons col-xs-12"> <div class="row"> <div class="sa-button-wrap"> <a id="sa-button" class="wayfinder-login d-flex sa-button" href="javascript:;"> <div class="sa-button-logo-wrap"> <i class="inline-icon sa-white"></i> </div> <div class="d-flex justify-content-center align-items-center sa-button-text text-truncate"> <div class="sa-button-text-primary text-truncate">Access through your institution</div> </div> </a> </div> <div class="title-button-pdf"> <button id="readPaperButton" data-url-read-paper-log="/Paper/ReadThePaperLog?paperId=527688" class="button button-160"> <span class="inline-element">Read The Paper</span> </button> </div> </div> <div class="row"> </div> </div> <div class="clearfix"></div> <div class="connected-title-container"> <div class="connected-title-text semibold-middle-text">You might also be interested in these 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title="Send message to Corresponding Author"> </a> <a href="/author-papers/efi-hadjixenophontos">Efi Hadjixenophontos</a>*, <a href="/author-papers/lukas-michalek">Lukas Michalek</a>, <a href="/author-papers/andreas-weigel">Andreas Weigel</a>, <a href="/author-papers/guido-schmitz-2">Guido Schmitz</a> </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>Keywords:</p> </div> </div> <div class="info-row-content semibold-middle-text col-md-10 col-sm-9 col-xs-8"> <div class="row"> <a href="/paper-keyword/hydrogenation-kinetics">Hydrogenation Kinetics</a>, <a href="/paper-keyword/linear-regime">Linear Regime</a>, <a href="/paper-keyword/mgh2">MgH<sub>2</sub></a>, <a href="/paper-keyword/pressure-dependence">Pressure Dependence</a>, <a href="/paper-keyword/tih2">TiH<sub>2</sub></a> </div> </div> </div> </div> <div class="papers-block-info col-lg-12"> <div 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