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首页> 外文期刊>ACS applied materials & interfaces >Reversible Interlayer Sliding and Conductivity Changes in Adaptive Tetrathiafulvalene-Based Covalent Organic Frameworks
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Reversible Interlayer Sliding and Conductivity Changes in Adaptive Tetrathiafulvalene-Based Covalent Organic Frameworks

机译:可逆层间滑动和电导率变化在基于自适应的四硫代戊烯的共价有机框架中

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摘要

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.
机译:订购的层间堆叠是二维共价有机框架(2D COF)的内在内部,对COF的光电性质具有很强的影响。对应于沿其基层的2D层的剪切相对应的可逆层间滑动是对结构和性质的吸引力控制,但它在2D COF领域中保持未探测。在此,我们证明可逆层间滑动可以在亚胺连接的四硫甲戊烯(基于COF TTF-DMTA中。溶剂处理在所提出的阶梯状SQL净结构之间引起结晶相变,并且略微滑动的蚀的SQL净结构。溶剂化诱导的结晶度变化在取向COF薄膜中所示的可逆光谱和电导率变化良好地相关。相反,在相关的TTF-TA COF中没有观察到可逆切换,其在没有亚苯基接头上没有甲氧基的情况下与TTF-DMTA不同。该工作代表了通过中间层滑动的非覆盖和楼梯状聚合状态的第一2D COF示例,该互换和阶梯状的聚合状态是可以使诸如化学传感器的应用的未公布的结构特征。

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