Bibliographic Details
| Title: |
Hierarchically Porous Polymers from Hyper-cross-linked Block Polymer Precursors. |
| Authors: |
Myungeun Seo1 seomyungeun@kaist.ac.kr, Soobin Kim1, Jaehoon Oh1, Sun-Jung Kim2, Hillmyer, Marc A.3 |
| Source: |
Journal of the American Chemical Society. 1/21/2015, Vol. 137 Issue 2, p600-603. 4p. |
| Subjects: |
Porous polymers, Block copolymers, Chain transfer (Chemistry), Addition polymerization, Alkylation, Mesopores |
| Abstract: |
We report synthesis of hierarchically porous polymers (HPPs) consisting of micropores and well-defined 3D continuous mesopores by combination of hyper-cross-linking and block polymer self-assembly. Copolymerization of 4-vinylbenzyl chloride (VBzCl) with divinylbenzene (DVB) in the presence of polylactide (PLA) macro-chain-transfer agent produced a cross-linked block polymer precursor PLA-b-P(VBzCl-co-DVB) via reversible addition--fragmentation chain transfer polymerization. A nanoscopic bicontinuous morphology containing PLA and P(VBzCl-co-DVB) microdomains was obtained as a result of polymerization-induced microphase separation. While a basic treatment of the precursor selectively removed PLA to yield a reticulated mesoporous polymer, hyper-cross-linking of the precursor by FeCl3 generated micropores in the P(VBzCl-co-DVB) microdomain via Friedel--Crafts alkylation and simultaneously degraded PLA to produce the HPP containing micropores in the mesoporous framework. The mesopore size of the HPP could be precisely controlled from 6 to 15 nm by controlling the molar mass of PLA. We demonstrate acceleration in adsorption rate in the HPP compared to a hyper-cross-linked microporous polymer. [ABSTRACT FROM AUTHOR] |
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| Database: |
Engineering Source |