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二维异质结构的界面化学——从基础到应用

Interface chemistry of two-dimensional heterostructures - fundamentals to applications.

作者信息

Gbadamasi Sharafadeen, Mohiuddin Md, Krishnamurthi Vaishnavi, Verma Rajni, Khan Muhammad Waqas, Pathak Saurabh, Kalantar-Zadeh Kourosh, Mahmood Nasir

机构信息

School of Engineering, RMIT University, Melbourne, Victoria 3001, Australia.

出版信息

Chem Soc Rev. 2021 Apr 7;50(7):4684-4729. doi: 10.1039/d0cs01070g. Epub 2021 Feb 23.

Abstract

Two-dimensional heterostructures (2D HSs) have emerged as a new class of materials where dissimilar 2D materials are combined to synergise their advantages and alleviate shortcomings. Such a combination of dissimilar components into 2D HSs offers fascinating properties and intriguing functionalities attributed to the newly formed heterointerface of constituent components. Understanding the nature of the surface and the complex heterointerface of HSs at the atomic level is crucial for realising the desired properties, designing innovative 2D HSs, and ultimately unlocking their full potential for practical applications. Therefore, this review provides the recent progress in the field of 2D HSs with a focus on the discussion of the fundamentals and the chemistry of heterointerfaces based on van der Waals (vdW) and covalent interactions. It also explains the challenges associated with the scalable synthesis and introduces possible methodologies to produce large quantities with good control over the heterointerface. Subsequently, it highlights the specialised characterisation techniques to reveal the heterointerface formation, chemistry and nature. Afterwards, we give an overview of the role of 2D HSs in various emerging applications, particularly in high-power batteries, bifunctional catalysts, electronics, and sensors. In the end, we present conclusions with the possible solutions to the associated challenges with the heterointerfaces and potential opportunities that can be adopted for innovative applications.

摘要

二维异质结构(2D HSs)已成为一类新型材料,其中不同的二维材料被组合在一起,以协同发挥它们的优势并弥补缺点。将不同的组分组合成二维异质结构,会因其组成成分新形成的异质界面而呈现出迷人的特性和有趣的功能。在原子水平上理解异质结构的表面性质和复杂的异质界面,对于实现所需性能、设计创新的二维异质结构以及最终释放其在实际应用中的全部潜力至关重要。因此,本综述介绍了二维异质结构领域的最新进展,重点讨论了基于范德华(vdW)和共价相互作用的异质界面的基本原理和化学性质。它还解释了与可扩展合成相关的挑战,并介绍了可能的方法,以便在对异质界面有良好控制的情况下大量制备。随后,强调了用于揭示异质界面形成、化学性质和本质的专门表征技术。之后概述了二维异质结构在各种新兴应用中的作用,特别是在高功率电池、双功能催化剂、电子学和传感器方面。最后,我们给出结论,以及应对异质界面相关挑战的可能解决方案和可用于创新应用的潜在机会。

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