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黏土启发的 MXene 基电化学器件和光电催化剂:最新进展和挑战。

Clay-Inspired MXene-Based Electrochemical Devices and Photo-Electrocatalyst: State-of-the-Art Progresses and Challenges.

机构信息

School of Chemical and Biomedical Engineering, Nanyang Technological University, Singapore, 637459, Singapore.

College of Environmental Science and Engineering, Hunan University, Changsha, 410082, P. R. China.

出版信息

Adv Mater. 2018 Mar;30(12):e1704561. doi: 10.1002/adma.201704561. Epub 2018 Jan 22.

Abstract

MXene, an important and increasingly popular category of postgraphene 2D nanomaterials, has been rigorously investigated since early 2011 because of advantages including flexible tunability in element composition, hydrophobicity, metallic nature, unique in-plane anisotropic structure, high charge-carrier mobility, tunable band gap, and favorable optical and mechanical properties. To fully exploit these potentials and further expand beyond the existing boundaries, novel functional nanostructures spanning monolayer, multilayer, nanoparticles, and composites have been developed by means of intercalation, delamination, functionalization, hybridization, among others. Undeniably, the cutting-edge developments and applications of clay-inspired 2D MXene platform as electrochemical electrode or photo-electrocatalyst have conferred superior performance and have made significant impact in the field of energy and advanced catalysis. This review provides an overview of the fundamental properties and synthesis routes of pure MXene, functionalized MXene and their hybrids, highlights the state-of-the-art progresses of MXene-based applications with respect to supercapacitors, batteries, electrocatalysis and photocatalysis, and presents the challenges and prospects in the burgeoning field.

摘要

MXene 是后石墨烯二维纳米材料中一个重要且日益流行的类别,自 2011 年初以来,由于其具有灵活可调的元素组成、疏水性、金属性、独特的面内各向异性结构、高电荷载流子迁移率、可调带隙以及有利的光学和机械性能等优点,受到了严格的研究。为了充分利用这些潜力并进一步超越现有边界,通过插层、分层、功能化、杂化等手段,已经开发出了跨越单层、多层、纳米颗粒和复合材料的新型功能纳米结构。不可否认的是,受粘土启发的二维 MXene 平台作为电化学电极或光电催化剂的前沿发展和应用赋予了其优异的性能,并在能源和先进催化领域产生了重大影响。本综述提供了对纯 MXene、功能化 MXene 及其杂化物的基本性质和合成途径的概述,重点介绍了基于 MXene 的超级电容器、电池、电催化和光催化应用的最新进展,并提出了该新兴领域的挑战和前景。

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