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Rationalizing the Hydrogen and Oxygen Evolution Reaction Activity of Two-Dimensional Hydrogenated Silicene and Germanene

机译:合理化二维氢化硅和锗烯的氢和氧析出反应活性

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We have undertaken first-principles electronic structure calculations to show that the chemical functionalization of two-dimensional hydrogenated silicene (silicane) and germanene (germanane) can become a powerful tool to increase the photocatalytic water-splitting activity. Spin-polarized density functional theory within the GGA-PBE and HSE06 types of exchange correlation functionals has been used to obtain the structural, electronic, and optical properties of silicane and germanane functionalized with a series of nonmetals (N, P, and S), alkali metals (Li, Na, and K) and alkaline-earth metals (Mg and Ca). The surface-adsorbate interaction between the functionalized systems with H-2 and O-2 molecules that leads to envisaged hydrogen and oxygen evolution reaction activity has been determined.
机译:我们进行了第一性原理电子结构计算,结果表明,二维氢化硅(silicane)和锗烷(germanane)的化学功能化可以成为增加光催化水分解活性的强大工具。已使用GGA-PBE和HSE06类型的交换相关功能中的自旋极化密度泛函理论来获得被一系列非金属(N,P和S)功能化的有机硅和锗烷的结构,电子和光学性质,碱金属(Li,Na和K)和碱土金属(Mg和Ca)。已经确定了功能化系统与H-2和O-2分子之间的表面吸附物相互作用,该相互作用导致设想的氢和氧放出反应活性。

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