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Theoretical investigation on the high HER catalytic activity of 2D layered GeP_3 nanomaterials and its further enhancement by applying the surface strain or coupling with graphene

机译:用石墨烯施加表面应变或耦合来理论研究2D层压型GEP_3纳米材料的高催化活性及其进一步增强

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Under the DFT calculations, we systematically investigate the catalytic activities for hydrogen evolution reaction (HER) of two-dimensional (2D) layered GeP3 systems, viewed as the analogues of phosphorene. Our computed results reveal that the monolayer and few-layered GeP3 systems can exhibit the good HER activity, where both the top sites over Ge and P atoms can serve as the most active sites. The correlative catalytic mechanisms are analyzed in detail. Further, we propose the effective strategy through applying the external strain to enhance the HER activity of these 2D layered GeP3 systems by optimizing the adsorption state of H* (Delta G(H*)) or electronic property. Imposing the compressive strain on the monolayer GeP3 and the tensile strain on the few-layered GeP3 can simultaneously endow them with the optimum Delta G(H*) value and good conductivity, bringing higher HER activity. Moreover, we have also constructed series of new sandwich nanostructures by alternately stacking the monolayer GeP3 and graphene, and all of them can uniformly exhibit the outstanding HER activity, due to the optimum Delta G(H*) value and good conductivity. Obviously, all these fascinating findings can be advantageous for achieving the highly efficient and nonprecious HER electrocatalysts based on the excellent GeP3 nanomaterials in the near future.
机译:在DFT计算下,我们系统地研究了二维(2D)层状GEP3系统的氢进化反应(她)的催化活性,观察为磷烯的类似物。我们的计算结果表明,单层和少数层的GEP3系统可以表现出良好的活动,其中GE和P原子上的顶部位点可以作为最活跃的网站。详细分析相关催化机制。此外,我们通过施加外部菌株来提出有效策略来通过优化H *(ΔG(H *))或电子特性的吸附状态来增强这些2D层状GEP3系统的活性。在单层GEP3上施加压缩菌株和少数层GEP3上的拉伸应变可以同时以最佳的ΔG(H *)值和良好的导电性同时赋予它们,引起更高的她的活动。此外,由于最佳的ΔG(H *)值和良好的导电性,我们还通过交替堆叠了一系列新的夹心纳米结构,通过堆叠单层GEP3和石墨烯,可以均匀地表现出优异的她的活性。显然,所有这些迷人的发现都是有利于在不久的将来基于优异的GEP3纳米材料来实现高效和非崇高的电催化剂。

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