4.8 Article

Binder-free ZnO@ZnSnO3 quantum dots core-shell nanorod array anodes for lithium-ion batteries

期刊

JOURNAL OF POWER SOURCES
卷 388, 期 -, 页码 11-18

出版社

ELSEVIER
DOI: 10.1016/j.jpowsour.2018.03.066

关键词

ZnO nanorod array; ZnSnO3 quantum dots; Core-shell nanostructures; Binder-free anode; Lithium-ion battery

资金

  1. Ministry of Science and Technology in Taiwan [MOST 105 - 2221-E-006 - 251-MY3, MOST 106 - 2221-E-006 - 202-MY3, MOST 107-3113-E-006-006]

向作者/读者索取更多资源

In this work, ZnSnO3 quantum dots (QDs), instead of commonly used conductive carbon, are grown on the ZnO nanorod (NR) array to construct the binder-free ZnO@ZnSnO3 QDs core-shell NR array electrode on carbon cloth for lithium-ion battery. The ZnO@ZnSnO3 QDs core-shell NR array electrode exhibits excellent lithium storage performance with an improved cycling performance and superior rate capability compared to the ZnO NR array electrode. At a current density of 200 mAg(-1), 15.8% capacity loss is acquired in the ZnO@ZnSnO3 QDs core shell NR array electrode after 110 cycles with capacity retention of 1073 mAhg(-1). Significant increases in reversible capacities from 340 to 545 mAhg(-1) and from 95 to 390 mAhg(-1) at current densities of 1000 and 2000 mAg(-1), respectively, are achieved as the ZnO NR arrays are coated with the ZnSnO3 QD shells. The remarkably improved electrochemical performances result from that the configuration of binder-free ZnO@ ZnSnO3 QDs core-shell NR array electrode not only facilitates the charge transfer through the solid electrolyte interface and the electronic/ionic conduction boundary as well as lithium ion diffusion but also effectively accommodates the volume change during repeated charge/discharge processes.

作者

我是这篇论文的作者
点击您的名字以认领此论文并将其添加到您的个人资料中。

评论

主要评分

4.8
评分不足

次要评分

新颖性
-
重要性
-
科学严谨性
-
评价这篇论文

推荐

暂无数据
暂无数据