Department of Physics , Harbin Institute of Technology , Harbin 150001 , P. R. China.
Inorg Chem. 2019 Sep 16;58(18):12053-12068. doi: 10.1021/acs.inorgchem.9b01255. Epub 2019 Sep 3.
Two-dimensional (2D) materials have attracted enormous attention in many fields because of their appealing performances. In this contribution, we perform first-principles calculations on the photocatalytic properties of IV-V compounds, along with the design of a functional Schottky device based on a graphene/SiAs van der Waals heterostructure (vdWH). Our results indicate that eight IV-V compound materials are all excellent photocatalysts for water-splitting reactions with high efficiency of visible light, with the conduction band minimum (CBM) and valence band maximum (VBM) both involving the corresponding band-gap region. It is examined whether a weak acid environment is beneficial for the hydrogen production process. Monolayer GeAs is characterized by an excellent absorption coefficient of up to 10-2 × 10 cm in the visible region. The other nanostructures also have a considerable optical absorption as high as approximately half of 10 cm. These illustrate fascinating application prospectives for IV-V compounds in photocatalysis for water splitting under the irradiation of visible light, predicting tremendous significance in the fields of energy conversion and hydrogen production. The graphene/SiAs vdWH nanocomposite at the equilibrium state is featured for an n-type Schottky contact. External strain and electric-field applications are employed to practically present the transition for interface contact between the n- and p-type Schottky contacts or between the Schottky and ohmic contacts, which suggests appealing applications for the graphene/SiAs vdWH as a competitive candidate for functional Schottky devices and nanoelectronic materials.
二维(2D)材料因其引人注目的性能而在许多领域引起了极大的关注。在本贡献中,我们使用第一性原理计算方法研究了 IV-V 族化合物的光催化性能,并设计了基于石墨烯/SiAs 范德华异质结构(vdWH)的功能肖特基器件。我们的结果表明,八种 IV-V 族化合物材料都是高效可见光水分解反应的优秀光催化剂,其导带最小值(CBM)和价带最大值(VBM)都涉及相应的能带隙区域。我们还研究了弱酸性环境是否有利于析氢过程。单层 GeAs 的特征是在可见光区具有高达 10-2×10 cm-1 的优异吸收系数。其他纳米结构的吸收系数也相当高,约为 10 cm-1 的一半。这些结果表明 IV-V 族化合物在可见光照射下水分解光催化方面具有迷人的应用前景,有望在能量转换和制氢等领域产生巨大的意义。平衡状态下的石墨烯/SiAs vdWH 纳米复合材料表现为 n 型肖特基接触。通过施加外部应变和电场,可以实际实现 n 型和 p 型肖特基接触或肖特基接触和欧姆接触之间的界面接触转变,这为石墨烯/SiAs vdWH 作为功能肖特基器件和纳米电子材料的有吸引力的应用提供了可能。