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Switching porosity of stable triptycene-based cage via solution-state assembly processes†
Hui Ma,Tian-Long Zhai,Zhen Wang,Guang Cheng,Bien Tan,Chun Zhang
RSC Advances Pub Date : 03/03/2020 00:00:00 , DOI:10.1039/D0RA00128G
Abstract

It is a great challenge to tune the porosity of porous materials. As most porous organic cages are soluble, solution processability can be a possible way to regulate the porosity of such materials. Herein, a triptycene-based cage (TC) is demonstrated to be stable in acid, base or boiling water. Meanwhile, its porosity can be tuned by adjusting the solution-state assembly processes. TC molecules crystallized slowly from solution exhibit nearly no porosity to nitrogen (off-state). While, after rapid precipitating from methanol/dichloromethane solution, the obtained TC (TC-rp) is in a porous state and exhibit a high BET surface area of 653 m2 g−1 (on-state).

Graphical abstract: Switching porosity of stable triptycene-based cage via solution-state assembly processes
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