Kang Sejong, Park Moon Jeong
Department of Chemistry, Pohang University of Science and Technology (POSTECH), Pohang, Korea 790-784.
ACS Macro Lett. 2020 Nov 17;9(11):1527-1541. doi: 10.1021/acsmacrolett.0c00629. Epub 2020 Oct 16.
Scientific research on advanced polymer electrolytes has led to the emergence of all-solid-state energy storage/transfer systems. Early research began with acid-tethered polymers half a century ago, and research interest has gradually shifted to high-precision polymers with controllable acid functional groups and nanoscale morphologies. Consequently, various self-assembled acid-tethered block polymer morphologies have been produced. Their ion properties are profoundly affected by the multiscale intermolecular interactions in confinements. The creation of hierarchically organized ion/dipole arrangements inside the block copolymer nanostructures has been highlighted as a future method for developing advanced single-ion polymers with decoupled ion dynamics and polymer chain relaxation. Several emerging practical applications of the acid-tethered block copolymers have been explored to draw attention to the challenges and opportunities in developing state-of-the-art electrochemical systems.
对先进聚合物电解质的科学研究催生了全固态能量存储/转移系统。早期研究始于半个世纪前的酸连接聚合物,研究兴趣已逐渐转向具有可控酸官能团和纳米级形态的高精度聚合物。因此,产生了各种自组装的酸连接嵌段聚合物形态。它们的离子性质受到受限环境中多尺度分子间相互作用的深刻影响。在嵌段共聚物纳米结构内部创建分层组织的离子/偶极排列,已被视为开发具有解耦离子动力学和聚合物链松弛的先进单离子聚合物的未来方法。已探索了酸连接嵌段共聚物的几种新兴实际应用,以引起人们对开发先进电化学系统中挑战和机遇的关注。