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通过逐步结构转变逐步调节二维共价有机框架的柔韧性及其与柔韧性相关的性质

Gradually Tuning the Flexibility of Two-Dimensional Covalent Organic Frameworks via Stepwise Structural Transformation and Their Flexibility-Dependent Properties.

作者信息

Zhou Zhi-Bei, Sun Hui-Hui, Qi Qiao-Yan, Zhao Xin

机构信息

Key Laboratory of Synthetic and Self-Assembly Chemistry for Organic Functional Molecules, Shanghai Institute of Organic Chemistry, University of Chinese Academy of Sciences, Chinese Academy of Sciences, 345 Lingling Road, Shanghai, 200032, China.

出版信息

Angew Chem Int Ed Engl. 2023 Sep 18;62(38):e202305131. doi: 10.1002/anie.202305131. Epub 2023 Aug 9.

DOI:10.1002/anie.202305131
PMID:37496161
Abstract

Flexible covalent organic frameworks (COFs) are intriguing for their dynamic properties distinctive from rigid counterparts but still suffer from limited accessibility. Especially, controlling flexibility of COFs is challenging and the impact of different flexibility on properties of COFs has rarely been unveiled. This article reports stepwise adjustment on flexibility of two-dimensional COFs, which is realized by the designed synthesis of rigid COF (R-COF), semi-flexible COF (SF-COF), and flexible COF (F-COF) through polymerization, linker exchange, and linkage conversion with a newly developed method for reduction of hydrazone, respectively. Significant difference in breathing behavior and self-adaptive capability of the three COFs are uncovered through vapor response and iodine capture experiments. Gas sorption experiments indicate that the porosity of F-COF could switch from "close" state in nitrogen to "open" state in carbon dioxide, which are not observed for R-COF and SF-COF. This study not only develops a strategy to adjust the flexibility of COFs by tuning their linkers and linkages, but also provides a deep insight into the impact of different flexibility on properties of COFs, which lays a foundation for the development of this new class of dynamic porous materials.

摘要

柔性共价有机框架(COFs)因其具有与刚性框架不同的动态特性而备受关注,但它们的可及性仍然有限。特别是,控制COFs的柔性具有挑战性,而且不同柔性对COFs性质的影响很少被揭示。本文报道了对二维COFs柔性的逐步调节,这是通过分别采用一种新开发的腙还原方法,通过聚合、连接体交换和连接转换,设计合成刚性COF(R-COF)、半柔性COF(SF-COF)和柔性COF(F-COF)来实现的。通过蒸汽响应和碘捕获实验,发现了这三种COFs在呼吸行为和自适应能力上的显著差异。气体吸附实验表明,F-COF的孔隙率可以从氮气中的“关闭”状态转变为二氧化碳中的“开放”状态,而R-COF和SF-COF则没有这种现象。这项研究不仅开发了一种通过调整连接体和连接来调节COFs柔性的策略,还深入洞察了不同柔性对COFs性质的影响,为这类新型动态多孔材料的发展奠定了基础。

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