Ultralong monoclinic ZnV2O6 nanowires: their shape-controlled synthesis, new growth mechanism, and highly reversible lithium storage in lithium-ion batteries

被引:80
作者
Sun, Yan [1 ]
Li, Chunsheng [1 ]
Wang, Lina [1 ]
Wang, Yaozu [2 ]
Ma, Xuegang [3 ]
Ma, Peijuan [1 ]
Song, Mingyang [1 ]
机构
[1] Hebei United Univ, Coll Chem Engn, Tangshan City 063009, Hebei Province, Peoples R China
[2] Hebei United Univ, Yisheng Coll, Tangshan City 063009, Hebei Province, Peoples R China
[3] Hebei United Univ, Anal & Testing Ctr, Tangshan City 063009, Hebei Province, Peoples R China
来源
RSC ADVANCES | 2012年 / 2卷 / 21期
关键词
MORPHOLOGY-CONTROLLED SYNTHESIS; RECHARGEABLE LI BATTERIES; COBALT VANADIUM-OXIDE; HYDROTHERMAL SYNTHESIS; ELECTROCHEMICAL PROPERTIES; TEMPERATURE SYNTHESIS; CATHODE MATERIALS; PERFORMANCE; INSERTION; MICROSPHERES;
D O I
10.1039/c2ra20825c
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In this paper, we report on the shape-controlled synthesis of monoclinic (m-) ZnV2O6 micro/nanostructures through a simple hydrothermal approach and their highly reversible lithium storage for anode materials in lithium-ion batteries. m-ZnV2O6 structures with different diameters were selectively explored by changing the critical experimental parameters of dwell time and reaction temperatures. A novel "dissolution recrystalizaion-Ostwald ripening-splitting" combination mechanism for uniform nanowires is proposed by further monitoring the time-dependent evolution of morphologies and phases. Furthermore, these m-ZnV2O6 nanowires with high aspect ratio exhibit a better reversible capacity and a much excellent cyclic retention than that of as-obtained mesostructures and bulk counterparts because of better contact behavior and a shorter diffusion length for Li+, implying a promising candidate for the application in high-energy batteries.
引用
收藏
页码:8110 / 8115
页数:6
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