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一种用于二氧化碳光电化学传感的基于卟啉的可溶液加工氢键有机框架

A Solution-Processable Porphyrin-Based Hydrogen-Bonded Organic Framework for Photoelectrochemical Sensing of Carbon Dioxide.

作者信息

Wang Chen, Song Xiyu, Wang Yao, Xu Rui, Gao Xiangyu, Shang Cheng, Lei Peng, Zeng Qingdao, Zhou Yaming, Chen Banglin, Li Peng

机构信息

Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, Department of Chemistry, Fudan University, 2005 Songhu Road, Shanghai, 200438, China.

CAS Key Laboratory of Standardization and Measurement for Nanotechnology, CAS Center for Excellence in Nanoscience, Department of Chemistry and International Institute of Nanotechnology, National Center for Nanoscience and Technology (NCNST), No. 11 Beiyitiao, Zhongguancun, Beijing, 100190, China.

出版信息

Angew Chem Int Ed Engl. 2023 Oct 23;62(43):e202311482. doi: 10.1002/anie.202311482. Epub 2023 Sep 15.

Abstract

Detecting CO in complex gas mixtures is challenging due to the presence of competitive gases in the ambient atmosphere. Photoelectrochemical (PEC) techniques offer a solution, but material selection and specificity remain limiting. Here, we constructed a hydrogen-bonded organic framework material based on a porphyrin tecton decorated with diaminotriazine (DAT) moieties. The DAT moieties on the porphyrin molecules not only facilitate the formation of complementary hydrogen bonds between the tectons but also function as recognition sites in the resulting porous HOF materials for the selective adsorption of CO . In addition, the in-plane growth of FDU-HOF-2 into anisotropic molecular sheets with large areas of up to 23000 μm and controllable thickness between 0.298 and 2.407 μm were realized in yields of over 89 % by a simple solution-processing method. The FDU-HOF-2 can be directly grown and deposited onto different substrates including silica, carbon, and metal oxides by self-assembly in situ in formic acid. As a proof of concept, a screen-printing electrode deposited with FDU-HOF-2 was fabricate as a label-free photoelectrochemical (PEC) sensor for CO detection. Such a signal-off PEC sensor exhibits low detection limit for CO (2.3 ppm), reusability (at least 30 cycles), and long-term working stability (at least 30 days).

摘要

由于环境大气中存在竞争性气体,在复杂气体混合物中检测一氧化碳具有挑战性。光电化学(PEC)技术提供了一种解决方案,但材料选择和特异性仍然有限。在此,我们构建了一种基于用二氨基三嗪(DAT)部分修饰的卟啉结构单元的氢键有机骨架材料。卟啉分子上的DAT部分不仅促进结构单元之间形成互补氢键,而且在所得多孔HOF材料中作为识别位点用于一氧化碳的选择性吸附。此外,通过简单的溶液处理方法,以超过89%的产率实现了FDU-HOF-2在平面内生长为大面积达23000 μm且厚度在0.298至2.407 μm之间可控的各向异性分子片。FDU-HOF-2可以通过在甲酸中原位自组装直接生长并沉积在包括二氧化硅、碳和金属氧化物在内的不同基底上。作为概念验证,制备了一种沉积有FDU-HOF-2的丝网印刷电极作为用于一氧化碳检测的无标记光电化学(PEC)传感器。这种信号关闭型PEC传感器对一氧化碳具有低检测限(2.3 ppm)、可重复使用性(至少30个循环)和长期工作稳定性(至少30天)。

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