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Updated: Jan 15, 2026

Preparation of Graphene Liquid Cells for the Observation of Lithium-ion Battery Material
Published on: February 5, 2019
Nanoporous CoSe2 polyhedra imbedded graphene as a high-performance sodium-ion battery anode material
Shujie Liu1, Haiguang Guo1, Bohao Wang1
1Key Laboratory of Materials Design and Quantum Simulation, College of Materials Science and Engineering, Changchun University, Changchun 130022, China. huxy@ccu.edu.cn.
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Sodium-ion batteries (SIBs) have emerged as promising candidates with the virtues of abundant sodium resources and low cost of sodium salts. CoSe2 as an anode material has attracted much attention because of its high theoretical capacity. However, the low conductivity of CoSe2 still severely hinders its application. Herein, we fabricated a graphene-crosslinked CoSe2 polyhedron composite material (CoPG) by utilizing graphene as the conductive framework and MOF-derived CoSe2 as the active component for energy storage. The carbon layer derived from the MOF can effectively inhibit polyselenide dissolution and, in combination with graphene, construct a double-carbon-layer conductive network that facilitates electron transport. As a result, the as-prepared CoPG3 can deliver a high reversible capacity of 565 mAh g-1 at 0.05C. After 100 cycles, its capacity remained at 87% at 0.5C. This work provides a new insight into the relationship between the conductivity and performance of electrode materials for SIBs.
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