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金属氧化物纳米片作为新型材料设计的二维构建单元

Metal Oxide Nanosheets as 2D Building Blocks for the Design of Novel Materials.

作者信息

Timmerman Melvin A, Xia Rui, Le Phu T P, Wang Yang, Ten Elshof Johan E

机构信息

MESA+ Institute for Nanotechnology, University of Twente, P.O. Box 217, 7500, AE, Enschede, The Netherlands.

出版信息

Chemistry. 2020 Jul 27;26(42):9084-9098. doi: 10.1002/chem.201905735. Epub 2020 Apr 1.

Abstract

Research into 2-dimensional materials has soared during the last couple of years. Next to van der Waals type 2D materials such as graphene and h-BN, less well-known oxidic 2D equivalents also exist. Most 2D oxide nanosheets are derived from layered metal oxide phases, although few 2D oxide phases can be also made by bottom-up solution syntheses. Owing to the strong electrostatic interactions within layered metal oxide crystals, a chemical process is usually needed to delaminate them into their 2D constituents. This Review article provides an overview of the synthesis of oxide nanosheets, and methods to assemble them into nanocomposites, mono- or multilayer films. In particular, the use of Langmuir-Blodgett methods to form monolayer films over large surface areas, and the emerging use of ink jet printing to form patterned functional films is emphasized. The utilization of nanosheets in various areas of technology, for example, electronics, energy storage and tribology, is illustrated, with special focus on their use as seed layers for epitaxial growth of thin films, and as electrochemically active electrodes for supercapacitors and Li ion batteries.

摘要

在过去几年中,对二维材料的研究急剧增加。除了诸如石墨烯和六方氮化硼等范德华型二维材料外,还存在不太知名的氧化物二维类似物。大多数二维氧化物纳米片源自层状金属氧化物相,尽管少数二维氧化物相也可以通过自下而上的溶液合成法制备。由于层状金属氧化物晶体内部存在强静电相互作用,通常需要一个化学过程将它们剥离成二维组分。这篇综述文章概述了氧化物纳米片的合成以及将它们组装成纳米复合材料、单层或多层膜的方法。特别强调了使用朗缪尔-布洛杰特方法在大面积上形成单层膜,以及喷墨印刷在形成图案化功能膜方面的新兴应用。文中举例说明了纳米片在电子、能量存储和摩擦学等各个技术领域的应用,特别关注它们作为薄膜外延生长的籽晶层以及超级电容器和锂离子电池的电化学活性电极的用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f901/7496187/d1c2c98d836e/CHEM-26-9084-g006.jpg

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