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层状金属有机硫族化合物:三维自组装半导体中的二维光电子学

Layered Metal-Organic Chalcogenides: 2D Optoelectronics in 3D Self-Assembled Semiconductors.

作者信息

Paritmongkol Watcharaphol, Feng Zhifu, Refaely-Abramson Sivan, Tisdale William A, Kastl Christoph, Maserati Lorenzo

机构信息

Department of Materials Science and Engineering, School of Molecular Science and Engineering (MSE), Vidyasirimedhi Institute of Science and Technology (VISTEC), Rayong 21210, Thailand.

Istituto Italiano di Tecnologia, Genova 16163, Italy.

出版信息

ACS Nano. 2025 Apr 8;19(13):12467-12477. doi: 10.1021/acsnano.4c18493. Epub 2025 Mar 26.

Abstract

Molecular self-assembly offers an effective and scalable way to design nanostructured materials with tunable optoelectronic properties. In the past 30 years, organic chemistry has delivered a plethora of metal-organic structures based on the combination of organic groups, chalcogens, and a broad range of metals. Among these, several layered metal-organic chalcogenides (MOCs)─including "mithrene" (AgSePh)─recently emerged as interesting platforms to host 2D physics embedded in 3D crystals. Their combination of broad tunability, easy processability, and promising optoelectronic performance is driving a renewed interest in the more general material group of "low-dimensional" hybrids. In addition, the covalent MOC lattice provides higher stability compared with polar materials in operating devices. Here, we provide a perspective on the rise of 2D MOCs in terms of their synthesis approaches, 2D quantum confined exciton physics, and potential future applications in UV and X-ray photodetection, chemical sensors, and electrocatalysis.

摘要

分子自组装为设计具有可调谐光电特性的纳米结构材料提供了一种有效且可扩展的方法。在过去的30年里,有机化学基于有机基团、硫族元素和多种金属的组合,提供了大量的金属有机结构。其中,几种层状金属有机硫族化合物(MOCs)——包括“mithrene”(AgSePh)——最近成为承载嵌入三维晶体中的二维物理的有趣平台。它们具有广泛的可调谐性、易于加工性和有前景的光电性能,这使得人们对更一般的“低维”杂化材料组重新产生了兴趣。此外,与极性材料相比,共价MOC晶格在操作器件中提供了更高的稳定性。在这里,我们从二维MOCs的合成方法、二维量子限制激子物理以及在紫外和X射线光探测、化学传感器和电催化方面潜在的未来应用等方面,对二维MOCs的兴起进行了展望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be77/11984305/ef1fb9010e92/nn4c18493_0001.jpg

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