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通过超声辅助温和溶剂热反应制备用于多功能应用的sp碳键合π共轭COF气凝胶。

Preparation of sp carbon-bonded π-conjugated COF aerogels by ultrasound-assisted mild solvothermal reaction for multi-functional applications.

作者信息

Wang Qiaomu, Gao Lei, Wang Peng, Wang Yandong, Xu Yang, Xu Haocheng, Wang Xuebin, Meng Zhen, Xi Kai

机构信息

MOE Key Laboratory of High Performance Polymer Materials & Technology, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210023, China.

National Laboratory of Solid State Microstructures (NLSSM), Collaborative innovation Center of Advanced Microstructures, Jiangsu Key Laboratory of Artificial Functional Materials, College of Engineering and Applied Sciences, Nanjing University, Nanjing, 210093, China.

出版信息

Nanoscale. 2024 Aug 15;16(32):15298-15307. doi: 10.1039/d4nr02017k.

Abstract

Molding COFs into aerogels from monomers can establish interpenetrating spatial network structures on the centimeter scale that increase the accessibility of dominant pore channels and the convenience of real application, which radically gets rid of the difficult reprocessing problems of insoluble and non-fusible powder COFs. However, the construction of bulk COF structures and achieving crystallinity are often incompatible, especially with sp carbon-based COFs, whose powder synthesis has been quite demanding. Herein, for the first time, we report an efficient method to prepare sp carbon-linked π-conjugated DFB-TMTA-COF (DT-COF) aerogels by an ultrasound-assisted mild solvothermal technique and freeze-drying. Particularly, unlike the typical synthesis methods of vacuum deoxygenation, high temperature and long reaction time, crystalline DT-COF aerogels can be obtained by reacting at 90 °C for 48 h without vacuum sealing. The fluffy, hierarchical porous flower-shaped microsphere clustering of DT-COF aerogels contributes to excellent mechanical properties and better host-guest interactions, which are favorable to utilize the benefits of the highly conjugated structure of channels. As a proof of concept, DT-COF aerogels have been used in absorption, batteries, and sensors, demonstrating enhanced functionality and effectiveness.

摘要

将共价有机框架(COFs)由单体模塑成气凝胶,可以在厘米尺度上建立互穿的空间网络结构,这增加了主要孔道的可及性以及实际应用的便利性,从根本上解决了不溶性和不可熔性粉末COFs难以再加工的问题。然而,块状COF结构的构建和实现结晶度往往是不相容的,特别是对于含sp碳的COFs,其粉末合成要求颇高。在此,我们首次报道了一种通过超声辅助温和溶剂热技术和冷冻干燥制备sp碳连接的π共轭DFB-TMTA-COF(DT-COF)气凝胶的有效方法。特别地,与典型的真空脱氧、高温和长反应时间的合成方法不同,在90°C下反应48小时且无需真空密封即可获得结晶性DT-COF气凝胶。DT-COF气凝胶蓬松的、分级多孔的花状微球聚集体有助于其优异的机械性能和更好的主客体相互作用,这有利于利用通道高度共轭结构的优势。作为概念验证,DT-COF气凝胶已用于吸附、电池和传感器,展现出增强的功能和有效性。

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