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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Hybrid density functional study on the photocatalytic properties of AlN/MoSe2, AlN/WS2, and AlN/WSe2 heterostructures
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Hybrid density functional study on the photocatalytic properties of AlN/MoSe2, AlN/WS2, and AlN/WSe2 heterostructures

机译:杂交密度函数研究AlN / MOSE2,ALN / WS2和ALN / WSE2异质结构的光催化性质

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Hybrid density functional has been adopted to theoretically investigate the structural, electronic, and optical properties of AIN/MoSe2, AIN/WS2, and AIN/WSe2 heterostructures with the consideration of effects of strains and pH so as to explore their potential visible light photocatalytic activities for water splitting. AIN/MoSe2, AIN/WS2, and AIN/WSe2 heterostructures with proper strains are energetically favorable due to the good lattice mismatch and the interface adhesion energies between the constituent monolayers. The charge accumulation/depletion around the interfaces of these heterostructures are beneficial for the generation and separation of photogenerated carriers, which is also favorable for improving the photocatalytic activities. Through adjusting the strains and the pH of the electrolyte, the AIN/MoSe2, AIN/WS2, and AIN/WSe2 heterostructures could own suitable bandgaps for absorbing visible light and appropriate band edge positions with respect to water redox levels for the spontaneous generation of hydrogen and oxygen. The band edge positions of AIN/MoSe2, AIN/WS2, and AIN/WSe2 heterostructures are thermodynamically feasible for over water splitting when the pHs of the electrolyte are respectively around 13, in the range of 4.5-8.1, and greater than 10.7. These findings pave a way to design the efficient AIN-based heterostructures for visible light photocatalytic water splitting.
机译:通过考虑菌株和pH的影响,从理论上采用混合密度函数研究AIN / MOSE2,AIN / WS2和AIN / WSE2异质结构的结构,电子和光学性质,以探讨其潜在的可见光光催化活性用于水分裂。 AIN / MOSE2,AIN / WS2和AIN / WSE2具有适当菌株的异质结构由于良好的晶格错配和构成单层之间的界面粘附能量而具有能力的优势。这些异质结构的界面周围的电荷积累/耗尽是有益的光生载体的产生和分离,这也有利于改善光催化活性。通过调节电解质的菌株和pH,AIN / MOSE2,AIN / WS2和AIN / WSE2异质结构可以拥有合适的带隙,用于吸收相对于水氧化还原水平的可见光和适当的带边缘位置,用于自发产生氢气和氧气。当电解质的pH分别约为13时,AIN / MOSE2,AIN / WS2和AIN / WSE2和AIN / WSE2异质结构在热力学上可用于水分裂,其在4.5-8.1的范围内,在4.5-8.1,并且大于10.7。这些发现铺平了一种设计了用于可见光光催化水分裂的高效AIN的异质结构。

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