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Monolayer triphosphates MP3 ( M = Sn, Ge) with excellent basal catalytic activity for hydrogen evolution reaction

机译:单层三磷酸腺苷MP3 (M = Sn,通用电气)优秀的基底为氢催化活性进化的反应

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摘要

Atomically thin two-dimensional (2D) materials have received intense research interest due to their novel properties and promising applications in nanodevices. By using density functional theory (DFT) calculations, we investigate catalytic activities of several newly predicted two-dimensional (2D) triphosphides GeP3, SnP3 and InP3 monolayers for hydrogen evolution reaction (HER). The calculation results show that GeP3 and SnP3 monolayers are active catalysts for HER with suitable free energy of hydrogen adsorption in the basal plane. In particular, the Gibbs free energy of hydrogen adsorption (Delta G(H*)) of GeP3 is 0.024 eV, a value even more favorable compared to the precious-group-metal (PGM) catalyst Pt. Moreover, the 2D GeP3 and SnP3 are intrinsically compatible with the graphene substrate so that the HER performance can be improved via building a hybrid multilayer with graphene sheet. The charge transfer from GeP3 or SnP3 to graphene, estimated to be 0.1278e or 0.2157e, can significantly enhance the electric conductivity and promote the electrocatalytic activity. Although the electronic band structure of GeP3 and SnP3 can be tuned by external strain, we find that the HER performance of GeP3 and SnP3 monolayer is actually insensitive to the external strain, a feature desirable for the catalytic application. The desirable properties for HER with nearly zero Gibbs free energy render 2D GeP3 and SnP3 promising candidates for future application in electrocatalysis.
机译:自动薄的二维(2 d)材料收到了强烈的研究兴趣由于他们的小说性质和应用前景在nanodevices。理论(DFT)计算,我们调查催化活动的几个新预测二维(2 d) triphosphides GeP3 SnP3和InP3层析氢反应(她)。SnP3层是活跃的催化剂给她合适的氢吸附的自由能基底平面。能源的氢吸附(δG (H *))GeP3 0.024 eV,是一个更加有利的价值相比precious-group-metal (PGM)催化剂Pt。此外,2 d GeP3和SnP3本质上与石墨烯兼容衬底,这样她的表演通过建立一个混合多层与改进石墨烯表。SnP3石墨烯,估计0.1278 e或0.2157 e,可以显著提高电力导电率,促进electrocatalytic活动。GeP3和SnP3可以被外部压力,调整我们发现她的表演GeP3 SnP3单层实际上是麻木不仁到外部应变,理想的催化应用程序。近零吉布斯自由能呈现2 d GeP3和SnP3未来有前途的候选人在电催化作用中的应用。

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