Zhang Weiyi, Zhao Qiang, Yuan Jiayin
Key Laboratory of Material Chemistry for Energy Conversion and Storage, Ministry of Education, School of Chemistry and Chemical Engineering, Huazhong University of Science and Technology, Wuhan, 430074, China.
Department of Chemistry & Biomolecular Science, Center for Advanced Materials Processing, Clarkson University, Potsdam, NY, 13699-5814, USA.
Angew Chem Int Ed Engl. 2018 Jun 4;57(23):6754-6773. doi: 10.1002/anie.201710272. Epub 2018 Apr 26.
The past decade has witnessed rapid advances in porous polyelectrolytes and there is tremendous interest in their synthesis as well as their applications in environmental, energy, biomedicine, and catalysis technologies. Research on porous polyelectrolytes is motivated by the flexible choice of functional organic groups and processing technologies as well as the synergy of the charge and pores spanning length scales from individual polyelectrolyte backbones to their nano-/micro-superstructures. This Review surveys recent progress in porous polyelectrolytes including membranes, particles, scaffolds, and high surface area powders/resins as well as their derivatives. The focus is the interplay between surface chemistry, Columbic interaction, and pore confinement that defines new chemistry and physics in such materials for applications in energy conversion, molecular separation, water purification, sensing/actuation, catalysis, tissue engineering, and nanomedicine.
在过去十年中,多孔聚电解质取得了迅速进展,人们对其合成以及在环境、能源、生物医学和催化技术中的应用有着浓厚兴趣。对多孔聚电解质的研究源于功能有机基团和加工技术的灵活选择,以及从单个聚电解质主链到其纳米/微米级超结构的电荷与孔隙跨长度尺度的协同作用。本综述概述了多孔聚电解质(包括膜、颗粒、支架以及高比表面积粉末/树脂及其衍生物)的最新进展。重点是表面化学、库仑相互作用和孔隙限制之间的相互作用,这些相互作用为此类材料在能量转换、分子分离、水净化、传感/驱动、催化、组织工程和纳米医学中的应用定义了新的化学和物理性质。