Graduate School of Nanoscience and Technology, Korea Advanced Institute of Science and Technology (KAIST) , Daejeon 305-701, Korea.
J Am Chem Soc. 2015 Jan 21;137(2):600-3. doi: 10.1021/ja511581w. Epub 2015 Jan 7.
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.
我们通过超交联和嵌段聚合物自组装的结合,报告了由微孔和明确定义的 3D 连续介孔组成的分级多孔聚合物(HPPs)的合成。在聚乳酸(PLA)大分子链转移剂的存在下,4-乙烯基苄基氯(VBzCl)与二乙烯基苯(DVB)共聚,通过可逆加成-断裂链转移聚合产生了交联嵌段聚合物前体 PLA-b-P(VBzCl-co-DVB)。聚合诱导的微相分离导致形成含有 PLA 和 P(VBzCl-co-DVB)微区的纳米级双连续形态。而前体的碱性处理选择性地去除 PLA 以得到网状介孔聚合物,前体的 FeCl3 超交联通过 Friedel-Crafts 烷基化在 P(VBzCl-co-DVB)微区中产生微孔,并同时将 PLA 降解以在介孔骨架中生成含有微孔的 HPP。通过控制 PLA 的摩尔质量,可以精确控制 HPP 的介孔尺寸从 6 到 15nm。我们证明与超交联微孔聚合物相比,HPP 的吸附速率加快。