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通过结合控制的宏观和微观相分离制备分级多孔聚合物整体材料。

Hierarchically Porous Polymer Monoliths by Combining Controlled Macro- and Microphase Separation.

机构信息

†Department of Chemical Engineering and Materials Science and ‡Department of Chemistry, University of Minnesota, Minneapolis, Minnesota 55455-0431, United States.

出版信息

J Am Chem Soc. 2015 Jul 22;137(28):8896-9. doi: 10.1021/jacs.5b04992. Epub 2015 Jul 10.

Abstract

The ability to tune polymer monolith porosity on multiple length scales is desirable for applications in liquid separations, catalysis, and bioengineering. To this end, we have developed a facile synthetic route to nanoporous polymer monoliths based on controlled polymerization of styrene and divinylbenzene from a poly(lactide) macro-chain transfer agent in the presence of nonreactive poly(ethylene oxide) (PEO). Simple variations in the volume fraction and/or molar mass of PEO lead to either polymerization-induced microphase separation or simultaneous macro- and microphase separation. These processes dictate the resultant morphology and allow for control of the macro- and microstructure of the monoliths. Subsequent selective etching produces monoliths with morphologies that can be tailored from mesoporous, with control over mesopore size, to hierarchically meso- and macroporous, with percolating macropores. This convenient synthetic route to porous polymer monoliths has the potential to be useful in applications where both rapid mass transport and a high surface area are required.

摘要

在液体分离、催化和生物工程等应用中,能够在多种长度尺度上调节聚合物整体多孔性是十分理想的。为此,我们开发了一种简便的合成方法,通过在聚(乳酸)大分子链转移剂存在的条件下,使苯乙烯和二乙烯基苯进行可控聚合,合成基于纳米多孔聚合物整体。简单改变聚氧化乙烯(PEO)的体积分数和/或摩尔质量,可导致聚合诱导的微相分离或同时发生的宏观和微观相分离。这些过程决定了最终的形态,并允许控制整体的宏观和微观结构。随后的选择性刻蚀产生的整体形态可以从介孔进行定制,介孔大小可控,到分级的介孔和大孔,具有贯通的大孔。这种方便的多孔聚合物整体的合成途径有可能在需要快速传质和高表面积的应用中得到应用。

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