Interfacial Synthesis of Structurally Defined Organic Two-dimensional Materials: Progress and Perspectives

H. Sahabudeen, Renhao Dong, Xinliang Feng
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引用次数: 2

Abstract

: In the last decade, the development of thin-layer organic 2D materials has attracted considerable attention due to their unique properties arising from 2D planar structures and versatility of organic chemistry. Several synthetic strategies have been developed to synthesize organic 2D materials, such as 2D polymers, 2D supra-molecular polymers as well as single/thin-layer 2D covalent organic frameworks and metal-organic frameworks, either by top-down exfoliation or bottom-up interfacial synthesis methods. Among these, the liquid interface offers a flat and uniform surface for a 2D confinement which renders the preparation of organic 2D materials on a large area under ambient conditions. This review article summarizes the recent developments on the interfacial synthesis of single-layer and few-layer organic 2D materials involving polymerization at the air–water interface by the Langmuir-Blodgett method and at liquid–liquid interfaces. Insights into the perspectives and challenges of synthetic strategies as well as structural characterization are provided for the future development of organic 2D materials.
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结构定义有机二维材料的界面合成:进展与展望
近十年来,由于二维平面结构和有机化学的通用性,薄层有机二维材料的发展受到了广泛的关注。通过自上而下的剥离或自下而上的界面合成方法,已经开发了几种合成策略来合成有机二维材料,如二维聚合物、二维超分子聚合物以及单层/薄层二维共价有机框架和金属有机框架。其中,液体界面为二维约束提供了一个平坦而均匀的表面,使得在环境条件下大面积制备有机二维材料。本文综述了近年来Langmuir-Blodgett法在空气-水界面和液-液界面聚合制备单层和少层有机二维材料的研究进展。洞察合成策略以及结构表征的前景和挑战,为有机二维材料的未来发展提供了帮助。
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