首页|Bimetallic selenide heterostructure with directional built-in electric-field confined in N-doped carbon nanofibers for superior sodium storage with ultralong lifespan

Bimetallic selenide heterostructure with directional built-in electric-field confined in N-doped carbon nanofibers for superior sodium storage with ultralong lifespan

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Constructing heterostructure is considered as an effective strategy to address the sluggish electronic and ionic kinetics of anode materials for sodium ion batteries(SIBs).However,realizing the orientated growth and uniform distribution of the heterostructure is still a great challenge.Herein,the regulated novel CoSe2/NiSe2 heterostructure confined in N-doped carbon nanofibers(CoSe2/NiSe2@N-C)are prepared by using Co/Ni-ZIF template,in which,the CoSe2/NiSe2 heterostructures realize uniform distribution on a micro level.Benefiting from the unique heterostructure and N-doped carbon nanofibers,the CoSe2/NiSe2@N-C deliveries superior rate capability and durable cycle lifespan with a reversible capacity of 400.5 mA h g-1 after 5000 cycles at 2 A g-1.The Na-ion full battery with CoSe2/NiSe2@N-C anode and layered oxide cathode displays a remarkable energy density of 563 W h kg-1 with 241.1 W kg-1 at 0.1 A g-1.The theoretical calculations disclose that the periodic and directional built-in electric-field along with the heterointerfaces of CoSe2/NiSe2@N-C can accelerate electrochemical reaction kinetics.The in(ex)situ experimental measurements reveal the reversible conversion reaction and stable structure of CoSe2/NiSe2@N-C during Na+insertion/extraction.The study highlights the potential ability of precisely controlled heterostructure to stimulate the electrochemical performances of advanced anode for SIBs.

CoSe2/NiSe2 heterostructureBuilt-in electric-fieldRate capabilityUltralong lifespanSodium ion batteries

Junying Weng、Degui Zou、Wenyong Yuan、Pengfei Zhou、Minghui Ding、Jin Zhou、Hailin Cong、Fangyi Cheng

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School of Materials Science and Engineering,Shandong University of Technology,Zibo 255000,Shandong,China

School of Chemistry and Chemical Engineering,Shandong University of Technology,Zibo 255000,Shandong,China

Key Laboratory of Advanced Energy Materials Chemistry(Ministry of Education),College of Chemistry,Nankai University,Tianjin 300071,China

山东省自然科学基金山东省自然科学基金山东省自然科学基金国家自然科学基金国家自然科学基金国家自然科学基金

ZR2021QB055ZR2023MB017ZR2022JQ102190114622078179222274083

2024

能源化学
中国科学院大连化学物理研究所 中国科学院成都有机化学研究所

能源化学

CSTPCDEI
影响因子:0.654
ISSN:2095-4956
年,卷(期):2024.91(4)
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