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二维过渡金属二硫属化物的化学钝化:策略、机制及光电应用前景

Chemical passivation of 2D transition metal dichalcogenides: strategies, mechanisms, and prospects for optoelectronic applications.

作者信息

Li Zhaojun, Bretscher Hope, Rao Akshay

机构信息

Solid State Physics, Department of Materials Science and Engineering, Uppsala University, 75103 Uppsala, Sweden.

The Max Planck Institute for the Structure and Dynamics of Matter, 22761, Hamburg, Germany.

出版信息

Nanoscale. 2024 May 23;16(20):9728-9741. doi: 10.1039/d3nr06296a.

Abstract

The interest in obtaining high-quality monolayer transition metal dichalcogenides (TMDs) for optoelectronic device applications has been growing dramatically. However, the prevalence of defects and unwanted doping in these materials remain challenges, as they both limit optical properties and device performance. Surface chemical treatments of monolayer TMDs have been effective in improving their photoluminescence yield and charge transport properties. In this scenario, a systematic understanding of the underlying mechanism of chemical treatments will lead to a rational design of passivation strategies in future research, ultimately taking a step toward practical optoelectronic applications. We will therefore describe in this mini-review the strategies, progress, mechanisms, and prospects of chemical treatments to passivate and improve the optoelectronic properties of TMDs.

摘要

对于获得用于光电器件应用的高质量单层过渡金属二硫属化物(TMDs)的兴趣一直在急剧增长。然而,这些材料中缺陷和不必要掺杂的普遍存在仍然是挑战,因为它们都会限制光学性能和器件性能。单层TMDs的表面化学处理在提高其光致发光产率和电荷传输特性方面已取得成效。在这种情况下,系统地了解化学处理的潜在机制将有助于在未来研究中合理设计钝化策略,最终朝着实际光电器件应用迈进。因此,我们将在本综述中描述化学处理的策略、进展、机制以及钝化和改善TMDs光电特性的前景。

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