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通过调控孔环境增强基于芘的共价有机框架的碘吸附容量。

Enhancing the Iodine Adsorption Capacity of Pyrene-Based Covalent Organic Frameworks by Regulating the Pore Environment.

机构信息

School of Chemistry and Chemical Engineering, Nanjing University of Science and Technology, Nanjing, 210094, P. R. China.

出版信息

Macromol Rapid Commun. 2023 Oct;44(19):e2300311. doi: 10.1002/marc.202300311. Epub 2023 Jul 26.

Abstract

Regulating of pore environment is an efficient way to improve the performance of covalent organic frameworks (COFs) for specific application requirements. Herein, the design and synthesis of two pyrene-based 2D COFs with -H or -Me substituents, TFFPy-PPD-COF and TFFPy-TMPD-COF are reported. Both of them show long order structure and high porosity, in which TFFPy-PPD-COF displays a larger pore volume and bigger BET surface area (2587 m g , 1.17 cm g ). Interestingly, TFPPy-TMPD-COF exhibits a much higher vapor iodine capacity (4.8 g g ) than TFPPy-PPD-COF (2.9 g g ), in contrast to their pore volume size. By using multiple techniques, the better performance of TFPPy-TMPD-COF in iodine capture is ascribed to the altered pore environment by introducing methyl groups, which contributes to the formation of polyiodide anions and enhances the interactions between the frameworks and iodine. These results will be helpful for understanding the effect of pore environment in COFs for iodine uptake and constructing novel structure with high iodine capture performance.

摘要

调控孔环境是提高共价有机框架(COFs)在特定应用要求下性能的有效方法。在此,报道了两种基于芘的 2D COFs,具有 -H 或 -Me 取代基,TFFPy-PPD-COF 和 TFFPy-TMPD-COF。它们都表现出长程有序结构和高孔隙率,其中 TFFPy-PPD-COF 具有更大的孔体积和更大的 BET 比表面积(2587 m²/g,1.17 cm²/g)。有趣的是,TFFPy-TMPD-COF 表现出比 TFFPy-PPD-COF(2.9 g/g)更高的蒸汽碘容量(4.8 g/g),尽管它们的孔体积大小不同。通过使用多种技术,TFFPy-TMPD-COF 在碘捕获方面的更好性能归因于引入甲基基团改变了孔环境,这有助于形成多碘阴离子并增强了框架与碘之间的相互作用。这些结果将有助于理解 COFs 中孔环境对碘吸收的影响,并构建具有高碘捕获性能的新型结构。

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