材料科学
四硫富瓦烯
共价有机骨架
堆积
石墨烯
共价键
化学物理
纳米技术
分子
复合材料
有机化学
化学
多孔性
作者
Song‐Liang Cai,Bing Sun,Xinle Li,Yilun Yan,Amparo Navarro,Andrés Garzón‐Ruiz,Haiyan Mao,Ruchira Chatterjee,Junko Yano,Chenhui Zhu,Jeffrey A. Reimer,Sheng‐Run Zheng,Jun Fan,Wei‐Guang Zhang,Yi Liu
标识
DOI:10.1021/acsami.0c03280
摘要
Abstract Ordered interlayer stacking is intrinsic in two-dimensional covalent organic frameworks (2D COFs) and has strong implications on COF’s optoelectronic properties. Reversible interlayer sliding, corresponding to shearing of 2D layers along their basal plane, is an appealing dynamic control of both structures and properties, yet it remains unexplored in the 2D COF field. Herein, we demonstrate that the reversible interlayer sliding can be realized in an imine-linked tetrathiafulvalene (TTF)-based COF TTF-DMTA. The solvent treatment induces crystalline phase changes between the proposed staircase-like sql net structure and a slightly slipped eclipsed sql net structure. The solvation-induced crystallinity changes correlate well with reversible spectroscopic and electrical conductivity changes as demonstrated in oriented COF thin films. In contrast, no reversible switching is observed in a related TTF-TA COF, which differs from TTF-DMTA in terms of the absence of methoxy groups on the phenylene linkers. This work represents the first 2D COF example of which eclipsed and staircase-like aggregated states are interchangeably accessed via interlayer sliding, an uncharted structural feature that may enable applications such as chemiresistive sensors.
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