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模板—电沉积法制备锡钴碳锂离子电池负极材料 被引量:2
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作者 孙玺 于维平 《材料热处理学报》 EI CAS CSCD 北大核心 2010年第7期20-24,共5页
以柠檬酸、EDTA为络合剂,CoCl2、SnCl4为主盐的基础电解液,首先在基础电解液中加入硬碳制备Sn-Co-C复合电极材料。SEM观察表明获得的Sn-Co-C复合电极表面为镶嵌C小颗粒的菜花状结构,C物理夹杂在Sn-Co合金中,硬碳的引入使得电极材料的循... 以柠檬酸、EDTA为络合剂,CoCl2、SnCl4为主盐的基础电解液,首先在基础电解液中加入硬碳制备Sn-Co-C复合电极材料。SEM观察表明获得的Sn-Co-C复合电极表面为镶嵌C小颗粒的菜花状结构,C物理夹杂在Sn-Co合金中,硬碳的引入使得电极材料的循环性能得到提高,首次充放电比容量分别为563.8和763.2 mA.h/g,而经过50次循环后充放电比容量分别为400.3和416.2 mA.h/g。然后,在基础电解液中加入甲酸,在聚苯乙烯微球(PS)为模板的辅助下制备孔状结构Sn-Co-C复合材料。获得的材料中Sn、Co、C的原子比分别为36.87%,2.82%,20.61%。充放电测试结果表明,孔状结构的Sn-Co-C电极表现出更好的循环性能,首次充放电比容量分别为821.1和946.6 mA.h/g,循环第50次后充放电比容量为401和457.6 mA.h/g,循环第60次后充放电比容量为349.7和401.5 mA.h/g,放电比容量达到400 mA.h/g以上。 展开更多
关键词 模板—电沉积 Sn-Co-C复合 孔状结构
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Synthesis of Various Metal/TiO2 Core/shell Nanorod Arrays
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作者 祝巍 王冠中 +1 位作者 洪勋 沈小双 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2011年第1期91-96,I0004,共7页
We present a general approach to fabricate metal/TiO2 core/shell nanorod structures by twostep electrodeposition. Firstly, TiO2 nanotubes with uniform wall thickness are prepared in anodic aluminum oxide (AAO) membr... We present a general approach to fabricate metal/TiO2 core/shell nanorod structures by twostep electrodeposition. Firstly, TiO2 nanotubes with uniform wall thickness are prepared in anodic aluminum oxide (AAO) membranes by electrodeposition. The wall thickness of the nanotubes could be easily controlled by modulating the deposition time, and their outer diameter and length are only limited by the channel diameter and the thickness of the AAO membranes, respectively. The nanotubes' tops prepared by this method are open, while the bottoms are connected directly with the Au film at the back of the AAO membranes. Secondly, Pd, Cu, and Fe elements are filled into the TiO2 nanotubes to form core/shell structures. The core/shell nanorods prepared by this two-step process are high density and free-standing, and their length is dependent on the deposition time. 展开更多
关键词 TITANIA NANOTUBE Core/shell ELECTRODEPOSITION Membrane
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Preparation of Ni nanoparticles plating by electrodeposition using reverse microemulsion as template 被引量:1
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作者 周海晖 彭春玉 +5 位作者 付超鹏 安静 邹贺 王一栋 许岩 旷亚非 《Journal of Central South University》 SCIE EI CAS 2010年第1期40-44,共5页
Ni nanoparticles plating was prepared in reverse microemulsion. The deposition was carried out through the Brownian motion of water pools in the reverse microemulsion and the adsorption of water pools on the electrode... Ni nanoparticles plating was prepared in reverse microemulsion. The deposition was carried out through the Brownian motion of water pools in the reverse microemulsion and the adsorption of water pools on the electrode surface. Effects of electrolytic parameters on the size of Ni particles were studied. The performances of hydrogen evolution and hydrogen storage of the Ni nanoparticles plating electrode were also investigated. The results indicate that the size of Ni nanoparticles decreases with the increase of Ni2+ concentration and the decrease of current density. The electrochemical activity of Ni nanoparticles plating electrode is much higher than that of bulk Ni electrode. 展开更多
关键词 Ni nanoparticles reverse microemulsion ELECTRODEPOSITION electrolytic parameters
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Synthesis and Characterization of Supported CulnSe2 Nanorod Arrays on Rigid Substrates
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作者 张中伟 李纪 +1 位作者 刘纪磊 朱长弋 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2011年第1期115-120,I0004,共7页
Copper indium diselenide nanorod arrays were electrodeposited on tungsten/silicon rigid substrates using porous anodic alumina as growth template. The porous anodic alumina templates were prepared by anodizing aluminu... Copper indium diselenide nanorod arrays were electrodeposited on tungsten/silicon rigid substrates using porous anodic alumina as growth template. The porous anodic alumina templates were prepared by anodizing aluminum films which were sputtered onto the tungsten/silicon substrates. A selective chemical etching was used to penetrate the barrier layer at the bottom of the alumina channels before electrodeposition, which enables direct electrical and chemical contact with the underside substrate electrode. The as-deposited samples were annealed at 450 ℃ in vacuum. Scanning electron microscopy revealed that the nanorods were dense and compact with diameter of about 100 nm, length of approximate 1 um, and the aspect ratio of 10. X-ray diffraction, micro-Raman spectroscopy, and high resolution transmission electron microscopy showed that chalcopyrite polycrystalline structure and high purity CuInSe2 nanorods were obtained. The grain size was large in the rod axial direction. Energy-dispersive X-ray spectroscopy showed the composition was nearly stoichiometric. The energy band gap of this nanorod arrays was analyzed by fundamental absorption spectrum and was evaluated to be 0.96 eV. 展开更多
关键词 CuInSe2 nanorod ELECTRODEPOSITION Porous alumina template
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