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Layer-dependent photocatalysts of GaN/SiC-based multilayer van der Waals heterojunctions for hydrogen evolution

机译:Layer-dependent GaN /应用的催化剂多层van der Waals heterojunctions for氢进化

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摘要

The development of non-precious, high-performance and environmentally friendly wide band gap semiconductor composite photocatalysts is highly desirable. Here, we report 2D GaN/SiC-based multilayer van der Waals heterostructures for hydrogen evolution and visible-light water splitting by using state-of-the-art hybrid density functional theory. We uncover that Bi-GaN/Bi-SiC owns two advantageous features for water decomposition: a type-II heterojunction and suitable band gap (2.05 eV). We demonstrate that the layer number plays a crucial role in the GaN/SiC-based composites. The type-II heterojunction is attributed to weak interlayer hybridization caused by multilayer SiC. Reduction of the band gap is attributed to lattice constant variation and interlayer interaction caused by the multilayer structure. Moreover, Bi-GaN/Bi-SiC shows the highest visible-light absorption coefficient on the whole, and exhibits an appropriate band gap that straddles the redox potential of water splitting at pH = 7. This work suggests that the band structure can be regulated by adjusting the number of GaN and SiC monolayers, providing theoretical guidance for experimental synthesis of GaN/SiC heterojunctions for hydrogen production.
机译:non-precious的发展,高性能和环保的宽的带隙半导体复合催化剂是高度可取的。多层范德瓦耳斯异质结构氢进化和可见光水通过使用最先进的混合分割密度泛函理论。Bi-GaN / Bi-SiC拥有两个有利的特性水分解:二型异质结和合适的带隙(2.05 eV)。的层数起着至关重要的作用氮化镓/应用。异质结是由于软弱夹层杂交多层碳化硅所致。的带隙是由于晶格常数变异和层间相互作用所致多层结构。显示最高的可见光吸收一个系数总体上和展品合适的带隙,横跨氧化还原潜在的分裂在pH = 7。表明,能带结构可以调节通过调整GaN和碳化硅的数量单层膜,提供理论指导实验合成的氮化镓/ SiC垂直制氢。

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