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Enabling Stable and Rapid Lithium/Sodium Storage by Anchoring Bimetallic Selenides with a Heterogeneous Interface on Reduced Graphene Oxide. | LitMetric

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Article Abstract

Transition metal selenides have emerged as attractive negative electrode candidates for rechargeable lithium-/sodium-ion batteries (LIBs/SIBs) thanks to their superior theoretical energy storage capability. Unfortunately, their practical application faces significant challenges due to low conductivity, structural degradation from volume changes, and sluggish ion diffusion kinetics. Herein, a nitrogen-doped carbon (NC) coated CuSe-CoSe heterostructure, which is embedded in reduced graphene oxide (rGO) sheets (CuSe-CoSe@NC@rGO), is synthesized. CuSe-CoSe@NC@rGO nanospheres possess a high specific surface area of 207.02 m g, which provides ample active sites for ion reactions. The heterojunction between CuSe and CoSe creates a built-in electric field, which is conducive to ion and electron transport. Additionally, NC shell and rGO matrix work synergistically to suppress volume expansion and enhance structural stability. In LIBs, it has a considerable specific capacity (1161.6 mA h g after 200 cycles at 0.2 A g) and good cycling stability (1261.1 mA h g after 500 cycles at 1 A g). In SIBs, it maintains 422.4 mA h g under 0.1 A g after 200 cycles. These advancements demonstrate the promise of CuSe-CoSe@NC@rGO as a promising anode in LIBs and SIBs.

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http://dx.doi.org/10.1002/smll.202507592DOI Listing

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