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Efficient charge separation and visible-light response in bilayer HfS2-based van der Waals heterostructures

机译:基于双层HFS2的VAN DER WALS异质结构的高效电荷分离和可见光响应

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摘要

Two-dimensional (2D) hafnium disulfide (HfS2) has been synthesized and is expected to be a promising candidate for photovoltaic applications, and at the same time the hexagonal BN sheet (h-BN) and graphene-like C3N4 sheet (g-C3N4) have also been fabricated and are expected to be applied in photocatalysis. In this work, we employ hybrid density functional theory to investigate HfS2-based van der Waals (vdW) heterojunctions for highly efficient photovoltaic and photocatalytic applications. HfS2/h-BN and HfS2/g-C3N4 heterostructures with direct bandgaps and efficient charge separation are both typical type-II semiconductors and have potential as photovoltaic structures for solar power. Moreover, compared with h-BN and g-C3N4 single-layers, HfS2/h-BN heterostructures with 6% tensile strain and HfS2/g-C3N4 heterostructures with 9% tensile strain have moderate bandgaps, whose optical absorption is obviously enhanced in the ultraviolet-visible (UV-VIS) light range and whose bandedges are suitable for photocatalytic water splitting. HfS2/h-BN heterostructures with 6% applied strain, being different from HfS2/g-C3N4 heterostructures with 9% strain, possess a direct bandgap and show complete separation of the photoinduced electron-hole pairs. Thus the HfS2/h-BN heterojunction with 6% strain has bright prospects for use in visible light photocatalytic water splitting to produce hydrogen.
机译:已合成二维(2D)二氟二硫化铪(HFS2),预期是光伏应用的有希望的候选者,同时六边形BN片(H-BN)和石墨烯C3N4片材(G-C3N4 )也已经制造并预计将应用于光催化。在这项工作中,我们采用混合密度泛函理论来研究高效的光伏和光催化应用的HFS2的VAN DER WALS(VDW)异质功能。具有直接带隙和有效电荷分离的HFS2 / H-BN和HFS2 / G-C3N4异质结构是典型的II半导体,并且具有用于太阳能的光伏结构。此外,与H-BN和G-C3N4单层相比,具有6%拉伸菌株的HFS2 / H-BN异质结构,具有9%拉伸菌株的HFS2 / G-C3N4异质结构具有中等的带隙,其光学吸收显然增强了紫外线可见(UV-VI)光范围,其带式适用于光催化水分裂。具有6%施加菌株的HFS2 / H-BN异质结构与具有9%菌株的HFS2 / G-C3N4异质结构不同,具有直接的带隙,并显示光诱导的电子孔对完全分离。因此,具有6%菌株的HFS2 / H-BN异质结具有明亮的前景,用于可见光光催化水分解以产生氢。

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  • 来源
    《RSC Advances》 |2018年第34期|共7页
  • 作者单位

    Southwest Univ Sch Phys Sci &

    Technol Chongqing 400715 Peoples R China;

    Southwest Univ Sch Phys Sci &

    Technol Chongqing 400715 Peoples R China;

    Southwest Univ Sch Phys Sci &

    Technol Chongqing 400715 Peoples R China;

    Southwest Univ Sch Phys Sci &

    Technol Chongqing 400715 Peoples R China;

    Southwest Univ Sch Phys Sci &

    Technol Chongqing 400715 Peoples R China;

    Southwest Univ Sch Phys Sci &

    Technol Chongqing 400715 Peoples R China;

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  • 正文语种 eng
  • 中图分类 化学;
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