N-doped graphene quantum dot-decorated MOF-derived yolk-shell ZnO/ NiO hybrids to boost lithium and sodium ion battery performance

被引:13
|
作者
Bajorowicz, Beata [1 ]
Wilamowska-Zawlocka, Monika [2 ]
Lisowski, Wojciech [3 ]
Zak, Andrzej [4 ]
Klimczuk, Tomasz [5 ,6 ]
机构
[1] Univ Gdansk, Fac Chem, Dept Environm Technol, PL-80308 Gdansk, Poland
[2] Gdansk Univ Technol, Fac Chem, Dept Energy Convers & Storage, PL-80233 Gdansk, Poland
[3] Polish Acad Sci, Inst Phys Chem, PL-01224 Warsaw, Poland
[4] Wroclaw Univ Sci & Technol, Inst Adv Mat, Fac Chem, PL-50370 Wroclaw, Poland
[5] Gdansk Univ Technol, Fac Appl Phys & Math, PL-80232 Gdansk, Poland
[6] Gdansk Univ Technol, Adv Mat Ctr, PL-80233 Gdansk, Poland
关键词
Yolk-shell structure; Quantum dots; MOF-derived material; Sodium ion battery; Lithium ion battery; STORAGE PERFORMANCE; ELECTRODE; MICROSPHERES; ANODE; MOS2; ACID;
D O I
10.1016/j.apsusc.2024.159702
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Surface engineering at the nanoscale to obtain robust interface between metal oxides and quantum dots is essential for improving the performance and stability of battery materials. Herein, we designed and prepared novel N-doped graphene quantum dot-modified ZnO/NiO anode materials with a well-defined yolk-shell structure for lithium and sodium-ion batteries. NG QDs were assembled on the ZnO/NiO microspheres using three different coupling strategies: solvothermal, direct adsorption and annealing under N2 atmosphere. The presence of NG QDs deposited on the ZnO/NiO hybrids promoted enhanced electrical conductivity, lower chargetransfer resistance and provides more active sites. As a result, NG-ZnO/NiO_s anode obtained by solvothermal route exhibited high reversible delithiation capacity of 912 mAh/g at 18.6 mA g-1 and excellent cycling performance with the average delithiation capacity of 525 mAh/g at 372 mA g-1 over 400 cycles. Moreover, application of the NG-ZnO/NiO_s elecrode in Na-ion batteries revealed decent electrochemical behavior with capacity values reaching 235 mAh/g at 18.6 mA g-1. Importantly, surface properties, morphology and electrochemical behavior of obtained NG-ZnO/NiO hybrids were dependent on the combination route of NG QDs with ZnO/NiO microspheres indicating that quality of heterojunction between composite components has significant impact on the electrode performance.
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页数:13
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