Halide Perovskite glues activate two-dimensional covalent organic framework crystallites for selective NO2 sensing

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作者
Wen Ye
Liangdan Zhao
Hong-Zhen Lin
Lifeng Ding
Qiang Cao
Ze-Kun Chen
Jia Wang
Qi-Meng Sun
Jing-Hui He
Jian-Mei Lu
机构
[1] Soochow University,State Key Laboratory of Radiation Medicine and Protection
[2] Xi’an Jiao Tong-Liverpool University,Department of Chemistry
[3] Chinese Academy of Sciences,Department i
[4] Soochow University,LAB, Suzhou Institute of Nano
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Nature Communications | / 14卷
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摘要
Two-dimensional covalent organic frameworks (2D COFs) are promising for gas sensing owing to the large surface area, abundant active sites, and their semiconducting nature. However, 2D COFs are usually produced in the form of insoluble micro-crystallites. Their poor contacts between grain boundaries severely suppress the conductivity, which are too low for chemresistive gas sensing. Here, we demonstrate that halide perovskites can be employed as electric glues to bond 2D COF crystallites to improve their conductivity by two orders of magnitude, activating them to detect NO2 with high selectivity and sensitivity. Resonant microcantilever, grand canonical Monte Carlo, density functional theory and sum-frequency generation analyses prove that 2D COFs can enrich and transfer electrons to NO2 molecules, leading to increased device conductivity. This work provides a facile approach for improving the conductivity of polycrystalline 2D COF films and may expand their applications in semiconductor devices, such as sensors, resistors, memristors and field-emission transistors.
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