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Real-time optical and electronic sensing with a β-amino enone linked triazine-containing 2D covalent organic framework

机译:β-氨基烯酮连接的含三嗪的2D共价有机框架的实时光学和电子传感

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摘要

Fully-aromatic, two-dimensional covalent organic frameworks (2D COFs) are hailed as candidates for electronic and optical devices, yet to-date few applications emerged that make genuine use of their rational, predictive design principles and permanent pore structure. Here, we present a 2D COF made up of chemoresistant β-amino enone bridges and Lewis-basic triazine moieties that exhibits a dramatic real-time response in the visible spectrum and an increase in bulk conductivity by two orders of magnitude to a chemical trigger - corrosive HCl vapours. The optical and electronic response is fully reversible using a chemical switch (NH3 vapours) or physical triggers (temperature or vacuum). These findings demonstrate a useful application of fully-aromatic 2D COFs as real-time responsive chemosensors and switches.
机译:全芳香族的二维共价有机骨架(2D COF)被誉为电子和光学设备的候选者,但迄今为止,很少出现能真正利用其合理,可预测的设计原理和永久孔结构的应用。在这里,我们介绍了由化学抗性β-氨基烯酮桥和Lewis碱性三嗪部分组成的2D COF,它在可见光谱中表现出惊人的实时响应,并且对化学触发物的体积电导率增加了两个数量级-腐蚀性HCl蒸气。使用化学开关(NH3蒸气)或物理触发器(温度或真空),光学和电子响应是完全可逆的。这些发现证明了全芳香族2D COF作为实时响应化学传感器和开关的有用应用。

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