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多维TiCT MXene结构 界面电化学自组装

Multidimensional TiCT MXene Architectures Interfacial Electrochemical Self-Assembly.

作者信息

Yun Taeyeong, Lee Gang San, Choi Jungwoo, Kim Hyerim, Yang Geon Gug, Lee Ho Jin, Kim Jin Goo, Lee Hyuck Mo, Koo Chong Min, Lim Joonwon, Kim Sang Ouk

机构信息

National Creative Research Initiative Center for Multi-dimensional Directed Nanoscale Assembly, Department of Materials Science and Engineering, KAIST Institute for Nanocentury, KAIST, Daejeon 34141, Republic of Korea.

Nano Convergence Technology Research Center, Korea Electronics Technology Institute, Gyeonggi-do 13509, Republic of Korea.

出版信息

ACS Nano. 2021 Jun 22;15(6):10058-10066. doi: 10.1021/acsnano.1c01727. Epub 2021 Jun 1.

Abstract

An effective pathway to build macroscopic scale functional architectures bearing diverse structural dimensions is one of the critical challenges in the two-dimensional (2D) MXene research area. Unfortunately, assembling MXene without adhesive binder is largely limited due to its innate brittle nature and the relatively weak inter-flake van der Waals contact, in contrast to other mechanically compliant 2D materials such as graphene. Herein, an electrochemical self-assembly of pure TiCT MXenes is presented for functional multidimensional MXene structures, effectively driven by layer-by-layer spontaneous interfacial reduction at metal template surfaces and subsequent defunctionalization. A three-dimensional open porous aerogel as well as 2D highly stacked thin film structures could be readily obtained in this approach, along with largely enhanced electrical properties induced by spontaneous removal of charge-trapping oxygen functional groups. Accordingly, supercapacitors and electromagnetic interference shielding films based on the multidimensional assembly demonstrate excellent performances.

摘要

构建具有不同结构维度的宏观尺度功能架构的有效途径是二维(2D)MXene研究领域的关键挑战之一。不幸的是,与其他具有机械柔韧性的二维材料(如石墨烯)相比,由于其固有的脆性以及相对较弱的片间范德华接触,无粘合剂组装MXene受到很大限制。在此,我们提出了一种纯TiCT MXene的电化学自组装方法,用于构建功能性多维MXene结构,该方法通过金属模板表面的逐层自发界面还原和随后的去功能化有效地驱动。通过这种方法,可以轻松获得三维开放多孔气凝胶以及二维高度堆叠的薄膜结构,同时由于电荷捕获氧官能团的自发去除,电学性能得到了极大增强。因此,基于多维组装的超级电容器和电磁干扰屏蔽膜表现出优异的性能。

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