Luminescent Porous Organic Crystals for Adsorptive Separation of Toluene and Methylcyclohexane

堆积 材料科学 甲基环己烷 分子 分子间力 发光 氢键 甲苯 溶剂 结晶学 化学工程 光化学 有机化学 化学 光电子学 工程类
作者
Siwen Hu,He Zhao,Liang Meng,Ningning Zhou,Bo Ding,Xingliang Liu,Yong‐Fei Zeng,Bo Tang,Jingjun Hao,Pengchong Xue
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:16 (4): 4863-4872 被引量:9
标识
DOI:10.1021/acsami.3c17865
摘要

A butterfly-shaped phenothiazine derivative, PTTCN, was synthesized to obtain pure organic porous crystals for the highly efficient absorptive separation of toluene (Tol) and methylcyclohexane (Mcy). Due to the presence of three polar cyano groups and nonplanar conformation, these molecules self-assembled into a hydrogen-bonded organic framework (X-HOF-5) with distinct cavities capable of accommodating Tol molecules through multiple hydrogen-bonding interactions. Upon solvent removal via heating, the activated X-HOF-5 retained its cavity structure albeit with altered stacking arrangements, accompanied by a remarkable fluorescent color change from cyan to green. X-HOF-5a can undergo a phase transformation into X-HOF-5 upon reabsorption of Tol, while exhibiting no accommodation of Mcy due to the weak intermolecular interaction between PTTCN and Mcy. This suggests that the activated HOF material prefers Tol over Mcy. Moreover, X-HOF-5a may selectively accommodate Tol in a Tol/Mcy equimolar mixture, and the purity of Tol can reach 97% after release from the framework. Additionally, it is noteworthy that the HOF material exhibits recyclability without any discernible loss in performance.
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