Facile synthesis of helical Co-based coordination supramolecular network micro-nano rods as a durable cathode for high-performance asymmetric supercapacitors and aqueous Co-Zn batteries

Feng Zhang,Jinjin Ma,Liuyang Bai, Weishi Xie,Xudong Wang, Ruifang Zhang

Applied Surface Science(2022)

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摘要
• A novel helical rod-like cobalt-based coordination supramolecular network material is fabricated. • The Co-CSN possesses structural flexibility and abundant open redox reaction sites. • The as-prepared cathode delivers a high areal capacitance of 10.19 F/cm 2 . • The as-assembled devices achieve high energy densities and outstanding cycle performance. Developing and exploring new-type electrode materials with powerful components and suitable morphologies for well-pleasing energy storage and conversion is an important task. Herein, a novel cobalt-based coordination supramolecular network (Co-CSN) material with a helical rod-like morphology is in-situ synthesized by employing Co foam as Co ions source and substrate through a facile solvothermal approach. The helical micro-nano structured Co-CSN possesses three-dimensional (3D) networks that formed via hydrogen bonds, which endows it structural flexibility and abundant open redox reaction sites. Based on these advantages, the as-fabricated self-supporting Co-CSN helical micro-nano rods deliver a high areal capacitance of 10.19 F/cm 2 , a good rate capability of 76.4% when increasing the current density to 30 mA/cm 2 . Furthermore, the assembled asymmetric supercapacitor (ASC) yields a volumetric capacitance of 7.45 F/cm 3 at 3 mA/cm 2 and a high energy density of 2.65 mW h cm −3 . Meanwhile, the fabricated aqueous Co-CSN//Zn battery presents a high capacity of 1.37 mAh/cm 2 and a remarkable energy density of 19.0 mW h cm −3 . Impressively, these two devices exhibit superior cycling performance (84.8% of its initial capacitance retained for Co-CSN//AC ASC and 81.1% for Co-CSN//Zn battery after 10000 cycles). This work demonstrates supper promising of coordination supramolecular network materials for electrochemical energy storage.
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关键词
Helical structure, Energy storage, Supercapacitor, Zn ion battery
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