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基于用咪唑鎓臂功能化的自组装海星状葫芦[6]脲的纳米海绵。

Nanosponges based on self-assembled starfish-shaped cucurbit[6]urils functionalized with imidazolium arms.

作者信息

Patamia Vincenzo, Gentile Davide, Fiorenza Roberto, Muccilli Vera, Mineo Placido G, Scirè Salvatore, Rescifina Antonio

机构信息

Dipartimento di Scienze del Farmaco e della Salute, Università di Catania, V.le A. Doria, 95125-Catania, Italy.

出版信息

Chem Commun (Camb). 2021 Apr 18;57(30):3664-3667. doi: 10.1039/d1cc00990g. Epub 2021 Mar 16.

Abstract

A new porous material based on the first supramolecular cucurbituril-based nanosponge was synthesized by the functionalization of cucurbit[6]uril with twelve 1-(2-bromoethyl)-3-methyl-1H-imidazol-3-ium arms. The porous structure and the high adsorption capacity were demonstrated through surface area measurements and carbon dioxide adsorption. The new supramolecular sponge showed attractive properties such as (i) a highly porous structure that allowed CO capture, (ii) the possibility to reuse the adsorbed CO for organic synthesis, and (iii) an exciting thermal stability up to around 800 °C, with the potential use of this material in high temperature reactions. Finally, the reuse of CO was successfully investigated in the carboxylation reaction of phenylacetylene.

摘要

通过用十二个1-(2-溴乙基)-3-甲基-1H-咪唑-3-鎓臂对瓜环[6]脲进行功能化,合成了一种基于首个超分子瓜环基纳米海绵的新型多孔材料。通过表面积测量和二氧化碳吸附证明了其多孔结构和高吸附容量。这种新型超分子海绵表现出吸引人的特性,例如:(i) 具有允许捕获CO₂的高度多孔结构;(ii) 有可能将吸附的CO₂再用于有机合成;(iii) 高达约800℃的令人兴奋的热稳定性,这种材料在高温反应中具有潜在用途。最后,在苯乙炔的羧化反应中成功研究了CO₂的再利用。

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