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Facile fabrication of ZnO-CuO porous hybrid microspheres as lithium ion battery anodes with enhanced cyclability 被引量:2

Facile fabrication of ZnO-CuO porous hybrid microspheres as lithium ion battery anodes with enhanced cyclability
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摘要 ZnO–CuO porous hybrid microspheres were successfully produced through a facile aging process of zinc citrate solid microspheres in copper sulfate solution combined with the subsequent annealing treatment in air atmosphere. The electrochemical performance investigation suggests that the harvested ZnO–CuO porous hybrid microspheres illustrate much higher specific capacity and better cycling stability than single ZnO counterparts. A reversible capacity of 585 mAh·g^-1 can be acquired for ZnO–CuO porous hybrid microspheres after cycling 500 times at a current density of 200 mA·g^-1. The porous configuration and the incorporation of CuO are responsible for the enhanced lithium storage properties of ZnO–CuO hybrids. ZnO–CuO porous hybrid microspheres were successfully produced through a facile aging process of zinc citrate solid microspheres in copper sulfate solution combined with the subsequent annealing treatment in air atmosphere. The electrochemical performance investigation suggests that the harvested ZnO–CuO porous hybrid microspheres illustrate much higher specific capacity and better cycling stability than single ZnO counterparts. A reversible capacity of 585 mAh·g^-1 can be acquired for ZnO–CuO porous hybrid microspheres after cycling 500 times at a current density of 200 mA·g^-1. The porous configuration and the incorporation of CuO are responsible for the enhanced lithium storage properties of ZnO–CuO hybrids.
出处 《Rare Metals》 SCIE EI CAS CSCD 2017年第5期403-410,共8页 稀有金属(英文版)
基金 financially supported by the National Key Research Program of China(No.2016YFA0202602) the National Natural Science Foundation of China(Nos.51371154 and 51571167) the Natural Science Foundation of Fujian Province of China(No.2017J05087)
关键词 Zinc oxide Copper oxide Porous structures Lithium ion battery Anodes Zinc oxide Copper oxide Porous structures Lithium ion battery Anodes
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  • 1Bruce, P. G.; Scrosati, B.; Tarascon, J. M. Nanomaterials for rechargeable lithium batteries. Angew. Chem. Int. Ed. 2008, 47, 2930-2946.
  • 2Fan, Y.; Huang, K.; Zhang, Q.; Xiao, Q. Z.; Wang, X. X.; Chen, X. D. Novel silicon-nickel cone arrays for high performance LIB anodes. J. Mater. Chem. 2012, 22, 20870-20873.
  • 3Xu, J. J.; Wu, H. Y.; Wang, F.; Xia, Y. Y.; Zheng, G. F. Zn4Sb3 nanotubes as lithium ion battery anodes with high capacity and cycling stability. Adv. Energy Mater., in press, DOI: 10.1002/aenm.201200564.
  • 4Lahann, J. Environmental nanotechnology: Nanomaterials clean up. Nat. Nanotechnol. 2008, 3, 320-321.
  • 5Xie, X. W.; Li, Y.; Liu, Z. Q.; Haruta, M.; Shen. W. J. Low- temperature oxidation of CO catalysed by CO304 nanorods. Nature 2009, 458, 746-749.
  • 6Chert, J.; Xu, L. N.; Li, W. Y.; Gou, X. L. a-FezO3 nanotubes in gas sensor and lithium-ion battery applications. Adv. Mater. 2005, 17, 582-586.
  • 7Lai, X. Y.; Li, J.; Korgel, B. A.; Dong, Z. H.; Li, Z. M.; Su, F. B.; Du, J.; Wang, D. General synthesis and gas-sensing properties of multi-shell metal oxide hollow microspheres. Angew. Chem. Int. Ed. 2011, 50, 2738-2741.
  • 8Mao, D.; Yao, J. X.; Lai, X. Y.; Yang, M.; Du, J. A.; Wang, D. Hierarchically mesoporous hematite microspheres and their enhanced formaldehyde-sensing properties. Small 2011, 7, 578-582.
  • 9Wang, G. M.; Ling, Y. C.; Wheeler, D. A.; George, K. E. N.; Horsley, K.; Heske, C.; Zhang, J. Z.; Li, Y. Facile synthesisof highly photoactive a-Fe203-based films for water oxidation. Nano Lett. 2011, 11, 3503-3509.
  • 10Hochbaum, A. I.; Yang, P. D. Semiconductor nanowires for energy conversion. Chem. Rev. 2010, 110, 527-546.

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