Issue 22, 2024

A general strategy for the in situ construction of CoSe2–MSex@GA (M = Zn, Ni, and Fe) heterostructures for effective sodium storage

Abstract

Effective strategies for constructing micro-/nanostructures with fast electrochemical reaction kinetics and excellent structural integrity can promote the practical application of metal selenide-based anode materials in sodium-ion batteries (SIBs). However, the precise control of their synthesis is still elusive. Herein, a facile and general precursor template strategy was developed for constructing three types of graphene aerogels (GAs) with in situ encapsulated bimetallic selenide (CoSe2–MSex@GA, M = Zn, Ni, and Fe) heterostructure materials. Rich heterogeneous interfaces, large graphene aerogel layer conductive networks and abundant porous structures engender more active sites, rapid reaction kinetics, enhanced electric/ionic conductivity and good structural stability in the prepared CoSe2–MSex@GA anodes, which thereby exhibit enhanced rate capabilities and cycling performances in SIBs. In particular, CoSe2–FeSe2@GA spherical heterostructure materials derived from Co–Fe PBA precursors exhibit a high capacity of 722.8 mA h g−1 at 1 A g−1 with 96.4% capacity retention after 1000 cycles. The kinetic analysis of the redox reaction showed that the CoSe2–MSex@GA electrodes were mainly dominated by pseudo-capacitive behaviors during the charging and discharging process. Besides, galvanostatic intermittent titration technique confirmed the rapid Na+ diffusion rate using the CoSe2–MSex@GA electrodes. This current scalable and simple preparation method for bimetallic selenide@GA heterostructures may be a promising strategy to provide more possibilities for the development of advanced electrode materials for sodium-ion batteries.

Graphical abstract: A general strategy for the in situ construction of CoSe2–MSex@GA (M = Zn, Ni, and Fe) heterostructures for effective sodium storage

Supplementary files

Article information

Article type
Research Article
Submitted
06 Jul 2024
Accepted
30 Sep 2024
First published
01 Oct 2024

Inorg. Chem. Front., 2024,11, 8078-8092

A general strategy for the in situ construction of CoSe2–MSex@GA (M = Zn, Ni, and Fe) heterostructures for effective sodium storage

Z. Xu, Y. Li, S. Li, Y. Chen, M. Farahmandjou, G. Wang, H. Yang and H. Tian, Inorg. Chem. Front., 2024, 11, 8078 DOI: 10.1039/D4QI01704H

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