超级电容器
聚合物
碱金属
多孔性
水溶液
配位聚合物
材料科学
储能
化学工程
碳纤维
多孔介质
电容
无机化学
纳米技术
金属有机骨架
高分子化学
比表面积
电容器
金属
电化学储能
作者
Michał K. Leszczyński,María K. Kochaniec,Michał Terlecki,Iwona Justyniak,S. Şahin,Busra Aydogdu,Recep Yüksel,Maciej Siekierski,Marcin Hołdyński,W. Wieczorek,Janusz Lewiński
标识
DOI:10.1038/s43246-025-01022-8
摘要
Abstract The application of alkali metal-based coordination polymers as precursors to porous materials for energy storage appears as a very promising, but yet essentially unexplored approach. Here, we provide comprehensive investigations of the alkali metal (Li, Na, K)-based coordination polymers with 1,3,5-benzenetricarboxylate as an organic linker, which revealed a variety of 2D and 3D coordination networks accessible in mild conditions and aqueous environment. The resulting coordination polymers were applied as self-templating precursors to porous carbon materials with hierarchical porosity, which exhibited Brunauer-Emmett-Teller (BET) surface areas up to 1871 m 2 /g. Furthermore, the developed porous carbons were applied as supercapacitors and aqueous Zn-ion capacitors (AZICs), which showed promising specific capacitance, as well as high cyclic stability and rate capability. In particular, the top-performing device, prepared using the carbon material developed from the K-based coordination polymer, achieved one of the highest performances reported for AZICs, exhibiting a remarkable specific capacitance of 754.7 F g -1 at 0.1 A g -1 .
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