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NiS <sub>2</sub> /FeS Heterostructured Nanoflowers for High-Performance Sodium Storage

Dong Yan, Shuhao Xiao, Xinyan Li, Jinxia Jiang, Qiyuan He, Hanchao Li, Jiaqian Qin, Rui Wu, Xiaobin Niu, Jun Song Chen

2023Energy Material Advances76 citationsDOIOpen Access PDF

Abstract

Transition metal sulfides demonstrate attractive potential for sodium storage owing to their high theoretical specific capacity and high reserve. However, the low conductivity and volume expansion deteriorate their high-rate performance and cycling stability. In this work, we construct NiS 2 /FeS heterostructure by growing Ni-based layered double hydroxide nanosheets on Fe-based Prussian Blue nanocrystals followed by gaseous sulfurization, giving rise to flower-like NiS 2 /FeS nanoparticles. The as-prepared nanocomposite exhibits good rate performance of 156 mAh g −1 at 50 A g −1 and long cycle life of 606 mAh g −1 at 5 A g −1 after 1,000 cycles, which are superior to the heterostructure-free counterpart of NiS 2 and FeS. Density functional theory calculation further verifies that the enhanced electrochemical performance of NiS 2 /FeS is due to the existence of interface derived from the heterostructure.

Topics & Concepts

HeterojunctionMaterials sciencePrussian blueElectrochemistryChemical engineeringNanocrystalNanocompositeNanoparticleNanotechnologyElectrodeChemistryOptoelectronicsPhysical chemistryEngineeringAdvancements in Battery MaterialsSupercapacitor Materials and FabricationMXene and MAX Phase Materials
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