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首页> 外文期刊>Frontiers of physics >Tuning band alignment and optical properties of 2D van der Waals heterostructure via ferroelectric polarization switching
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Tuning band alignment and optical properties of 2D van der Waals heterostructure via ferroelectric polarization switching

机译:通过铁电偏振切换调谐带对准和2D范德瓦尔斯异质结构的带对准和光学性质

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摘要

Favourable band alignment and excellent visible light response are vital for photochemical water splitting. In this work, we have theoretically investigated how ferroelectric polarization and its reversibility in direction can be utilized to modulate the band alignment and optical absorption properties. For this objective, 2D van der Waals heterostructures (HTSs) are constructed by interfacing monolayer MoS_2 with ferroelectric In_2Se_3. We find the switch of polarization direction has dramatically changed the band alignment, thus facilitating different type of reactions. In In_2Se_3/MoS_2/In_2Se_3 heterostructures, one polarization direction supports hydrogen evolution reaction and another polarization direction can favour oxygen evolution reaction. These can be used to create tuneable photocatalyst materials where water reduction reactions can be selectively controlled by polarization switching. The modulation of band alignment is attributed to the shift of reaction potential caused by spontaneous polarization. Additionally, the formed type-Ⅱ van der Waals HTSs also significantly improve charge separation and enhance the optical absorption in the visible and infrared regions. Our results pave a way in the design of van der Waals HTSs for water splitting using ferroelectric materials.
机译:有利的带对准和优异的可见光反应对于光化学水分裂至关重要。在这项工作中,理论上,我们已经研究了如何利用铁电极极化和其可逆性来调节带对准和光学吸收特性。为此目的,通过将单层MOS_2与铁电IN_2SE_3接地来构造2D范德瓦尔斯异质结构(HTSS)。我们发现偏振方向的开关大大改变了带对准,从而促进了不同类型的反应。在IN_2SE_3 / MOS_2 / IN_2SE_3异质结构中,一个偏振方向支持氢气进化反应,另一种偏振方向可以赞成氧气进化反应。它们可用于营造可调谐的光催化剂材料,其中可以通过偏振切换选择性地控制水还原反应。带对准的调制归因于自发极化引起的反应电位的转变。此外,所形成的Ⅱ型范德华HTSS还显着提高了电荷分离,增强了可见光和红外区域的光学吸收。我们的结果在使用铁电材料的van der Waals HTSS设计方面铺平了一种方式。

著录项

  • 来源
    《Frontiers of physics》 |2020年第6期|63504.1-63504.7|共7页
  • 作者单位

    School of Chemistry and Physics Queensland University of Technology Gardens Point Campus Brisbane QLD 4000 Australia Centre for Materials Science Queensland University of Technology Gardens Point Campus Brisbane QLD 4000 Australia;

    School of Chemistry and Physics Queensland University of Technology Gardens Point Campus Brisbane QLD 4000 Australia Centre for Materials Science Queensland University of Technology Gardens Point Campus Brisbane QLD 4000 Australia;

    School of Chemistry and Physics Queensland University of Technology Gardens Point Campus Brisbane QLD 4000 Australia Centre for Materials Science Queensland University of Technology Gardens Point Campus Brisbane QLD 4000 Australia;

    School of Chemistry and Physics Queensland University of Technology Gardens Point Campus Brisbane QLD 4000 Australia Centre for Materials Science Queensland University of Technology Gardens Point Campus Brisbane QLD 4000 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    photocatalyst; ferroelectric; MoS_2; In_2Se_3; heterostructures; water splitting; 2D materials;

    机译:光催化剂;铁电;mos_2;in_2se_3;异质结构;水分裂;2D材料;

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