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Controlling the Size, Shape and Stability of Supramolecular Polymers in Water
Published on: August 2, 2012
Stabilization of Supramolecular Frameworks by Surface-Confined Polymerization for Natural Gas Purification
Fan Li1, Xiong-Hui Cai1, Hang-Ou Qi1
1State Key Laboratory of Materials-Oriented Chemical Engineering, Jiangsu National Synergetic Innovation Center for Advanced Material (SICAM), College of Chemical Engineering, Nanjing Tech University, Nanjing 211816, China.
Abstract:
High-porosity supramolecular frameworks (SMFs) show potential as natural gas purification adsorbents, but their instability and tendency to collapse after activation limit their practical value. Here, we adopt the strategy of surface-confined polymerization to overcome this problem, using trimethylhexamethylene diisocyanate (TMDI) to coat the surface of a new SMF, NUT-130, which allows obtaining NUT-130@PolyTMDI with permanent porosity. Compared to the uncoated material NUT-130, the specific surface area of NUT-130@PolyTMDI increased 3.25 times from 627 m2·g-1 to 2668 m2·g-1. The coated samples showed a more favorable separation performance due to the retained mesopores, which favored the adsorption of C2H6 and C3H8. Breakthrough experiments showed that NUT-130@PolyTMDI was significantly superior to NUT-130 for the ternary mixture CH4/C2H6/C3H8 (85:10:5, v:v:v) separation, and the performance was almost unchanged after three cycles. This work provides a strategy for preserving the mesopores of SMF, which enhances the separation efficiency for natural gas purification and provides ideas for the subsequent synthesis of novel adsorbents for natural gas purification.

