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Hydrogen evolution reaction: The role of arsenene nanosheet and dopant

机译:析氢反应:砷纳米片和掺杂剂的作用

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The state-of-the-art density functional theory (DFT) is employed to study the catalytic activity of arsenene for hydrogen evolution reaction (HER) and oxygen evolution reaction (OER). We have included dispersion correction to get accurate adsorption energy on the individual catalytic surface (top site). Using binding energy calculation, arsenene is shown to be a potential candidate for HER. Here we investigate the stability and electronic properties of the honeycomb structure of the arsenene system using first-principles calculation to find the effect of different dopants on the fundamental band gap, which is one of the primary parameters in the photocatalytic water splitting. Further, we sieved the dopant for better HER catalytic activity by substituting one of the arsenene (As) atoms by B, N, O, Ge, Ga and Se atoms to make arsenene a better candidate for HER. Our studies depict that HER activity is increased by 82% for O-doped arsenene and OER activity by 87% for B-doped arsenene as compared to pristine arsenene.
机译:采用最新的密度泛函理论(DFT)研究砷对氢释放反应(HER)和氧释放反应(OER)的催化活性。我们进行了色散校正,以在单个催化表面(顶部部位)上获得准确的吸附能。使用结合能计算,表明砷是HER的潜在候选物。在这里,我们使用第一性原理计算研究砷系统蜂窝结构的稳定性和电子性能,以发现不同掺杂剂对基带隙的影响,这是光催化水分解的主要参数之一。此外,我们通过用B,N,O,Ge,Ga和Se原子取代砷(As)原子之一使砷成为HER的更好候选物,从而筛选出具有更好HER催化活性的掺杂剂。我们的研究表明,与原始砷相比,O掺杂的砷的HER活性增加了82%,B掺杂的砷的OER活性增加了87%。

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