二维无机手性材料和二维有机-无机杂化手性材料的研究进展

Wenyan Zhang, Hangmin Guan, Yingfei Hu, Wen Wang, Fei Liu, Xiaoli Yang, Lingyun Hao
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摘要

近年来,二维(2D)材料在储能、热管理、光电探测器、催化、场效应晶体管和光伏组件等各个应用领域都有很大的应用前景,引起了人们的极大关注。二维材料的这些优点归功于其独特的结构和性能。手性是物质的固有性质,即物质不能与其镜像重叠。手性是影响手性物质性能的唯一因素,因此手性科学取得了重大进展。随着手性科学的迅速发展,人们发现手性不仅存在于手性有机分子中,还可以通过打破二维无机材料和有机-无机杂化材料框架内的手性对称性来诱导形成二维手性材料。与不具有手性的二维材料相比,这些二维无机手性材料和二维有机-无机杂化手性材料由于手性对称性破缺而表现出创新的性能。然而,目前只有一小部分工作可以全面总结这些有前途的二维手性材料的进展。因此,鉴于其巨大的潜力,对这些新开发的二维手性材料进行全面的总结是迫切需要的。本文从二维无机材料和二维有机-无机杂化材料的化学组成和分类、其独特性能的应用潜力、目前的合成策略、发展挑战和光明前景等方面综述了近年来二维无机材料和二维有机-无机杂化材料的研究进展,以突出其重要意义。这一综述有望对具有手性的先进二维功能材料提供指导和高度的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advances in Two-dimensional (2D) Inorganic Chiral Materials and 2D Organic-inorganic Hybrid Chiral Materials
Recently, two-dimensional (2D) materials have gained immense attention, as they are promising in various application fields, such as energy storage, thermal management, photodetectors, catalysis, field-effect transistors, and photovoltaic modules. These merits of 2D materials are attributed to their unique structure and properties. Chirality is an intrinsic property of a substance, which means the substance can not overlap with its mirror image. Significant progress has been made in chiral science, for chirality uniquely influences a chiral substance's performance. With the rapid development of chiral science, it became unveiled that chirality not only exists in chiral organic molecules but can also be induced in 2D inorganic materials and 2D organic-inorganic hybrid materials by breaking the chiral symmetry within their framework to form 2D chiral materials. Compared with 2D materials that do not have chirality, these 2D inorganic chiral materials and 2D organic-inorganic hybrid chiral materials exhibit innovative performance due to chiral symmetry breaking. Nevertheless, at present, only a fraction of work is available which comprehensively sums up the progress of these promising 2D chiral materials. Thus, given their high potential, it is urgent to summarize these newly developed 2D chiral materials comprehensively. In the current study, to feature and highlight their major significance, the recent progress of 2D inorganic materials and 2D organic-inorganic hybrid materials from their chemical composition and categories, application potential associated with their unique properties, and present synthesis strategies to fabricate them along with discussion concerning the development challenges and their bright future were reviewed. This review is anticipated to be instructive and provide a high understanding of advanced functional 2D materials with chirality.
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