Cyclotetrabenzil-Based Porous Organic Polymers with High Carbon Dioxide Affinity

T. Ashirov, Maymounah Alrayyani, K. Song, O. Miljanić, Ali Coskun
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引用次数: 3

Abstract

Abstract Porous organic polymers (POPs) incorporating macrocyclic units have been investigated in recent years in an effort to transfer macrocycles' intrinsic host–guest properties onto the porous networks to achieve complex separations. In this regard, highly interesting building blocks are presented by the family of cyclotetrabenzoin macrocycles with rigid, well-defined, electron-deficient cavities. This macrocycle shows high affinity towards linear guest molecules such as carbon dioxide, thus offering an ideal building block for the synthesis of CO2-philic POPs. Herein, we report the synthesis of a POP through the condensation reaction between cyclotetrabenzil and 1,2,4,5-tetraaminobenzene under ionothermal conditions using the eutectic zinc chloride/sodium chloride/potassium chloride salt mixture at 250 °C. Notably, following the condensation reaction, the macrocycle favors three-dimensional (3D) growth rather than a two-dimensional one while retaining the cavity. The resulting polymer, named 3D-mPOP, showed a highly microporous structure with a BET surface area of 1142 m2 g−1 and a high carbon dioxide affinity with a binding enthalpy of 39 kJ mol−1. Moreover, 3D-mPOP showed very high selectivity for carbon dioxide in carbon dioxide/methane and carbon dioxide/nitrogen mixtures.
高二氧化碳亲和性环四苯甲醚基多孔有机聚合物
摘要近年来,人们对含有大环单元的多孔有机聚合物(POP)进行了研究,试图将大环固有的主客体性质转移到多孔网络上,以实现复杂的分离。在这方面,具有刚性、明确定义、缺电子空腔的环四苯偶姻大环家族提出了非常有趣的构建块。这种大环对二氧化碳等线性客体分子表现出很高的亲和力,因此为合成亲二氧化碳的持久性有机污染物提供了理想的构建块。在此,我们报道了在离子热条件下,使用共晶氯化锌/氯化钠/氯化钾盐混合物,在250°C下,通过环四联苯和1,2,4,5-四氨基苯之间的缩合反应合成POP。值得注意的是,在缩合反应之后,大环有利于三维(3D)生长,而不是二维生长,同时保留空腔。所得聚合物命名为3D-mPOP,显示出高度微孔结构,BET表面积为1142 m2 g−1和结合焓为39的高二氧化碳亲和力 kJ mol−1。此外,3D-mPOP对二氧化碳/甲烷和二氧化碳/氮气混合物中的二氧化碳显示出非常高的选择性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.70
自引率
0.00%
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审稿时长
12 weeks
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