Park Kyung-Soo, Seo Seung-Deok, Shim Hyun-Woo, Kim Dong-Wan
Department of Materials Science and Engineering, Ajou University, Suwon, 443-749, Republic of Korea.
Nanoscale Res Lett. 2012 Jan 5;7(1):35. doi: 10.1186/1556-276X-7-35.
NixCo1-xMoO4 (0 ≤ x ≤ 1) nanowire electrodes for lithium-ion rechargeable batteries have been synthesized via a hydrothermal method, followed by thermal post-annealing at 500°C for 2 h. The chemical composition of the nanowires was varied, and their morphological features and crystalline structures were characterized using field-emission scanning electron microscopy and X-ray powder diffraction. The reversible capacity of NiMoO4 and Ni0.75Co0.25MoO4 nanowire electrodes was larger (≈520 mA h/g after 20 cycles at a rate of 196 mA/g) than that of the other nanowires. This enhanced electrochemical performance of NixCo1-xMoO4 nanowires with high Ni content was ascribed to their larger surface area and efficient electron transport path facilitated by their one-dimensional nanostructure.
通过水热法合成了用于锂离子可充电电池的NixCo1-xMoO4(0≤x≤1)纳米线电极,随后在500°C下进行2小时的热退火处理。纳米线的化学成分有所不同,使用场发射扫描电子显微镜和X射线粉末衍射对其形态特征和晶体结构进行了表征。NiMoO4和Ni0.75Co0.25MoO4纳米线电极的可逆容量更大(在196 mA/g的电流密度下循环20次后约为520 mA h/g),高于其他纳米线。高镍含量的NixCo1-xMoO4纳米线这种增强的电化学性能归因于其较大的表面积以及由其一维纳米结构促进的高效电子传输路径。