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球形氢氧化镍的微结构形成机制研究
引用本文:沈湘黔,彭美勋,景茂祥,危亚辉.球形氢氧化镍的微结构形成机制研究[J].功能材料,2005,36(10):1629-1633.
作者姓名:沈湘黔  彭美勋  景茂祥  危亚辉
作者单位:1. 江苏大学,材料学院,江苏,镇江,212013;长沙矿冶研究院,湖南,长沙,4101012
2. 长沙矿冶研究院,湖南,长沙,4101012;中南大学,粉末冶金国家重点实验室,湖南,长沙,410083
3. 江苏大学,材料学院,江苏,镇江,212013
4. 长沙矿冶研究院,湖南,长沙,4101012
基金项目:Project supported by the National Nature Science Foundation of China (50134020)
摘    要:通过扫描电镜(SEM)和透射电镜(TEM)技术研究了在连续搅拌反应沉淀-结晶过程中生成的球形氢氧化镍的微结构形成机制.研究结果表明,在连续搅拌反应器中,小颗粒的聚集为氢氧化镍微粒生长的主要方式,聚集和重结晶过程进而影响球形氢氧化镍颗粒的表面和内部结构;宏观形貌为球形的每一个氢氧化镍微球由纳米片状氢氧化镍沿径向叠砌而成,纳米片状氢氧化镍晶粒之间相互连接形成三维网络结构;氢氧化镍微球表面结构显示由新生纳米晶氢氧化镍自组装聚集特征,同时微球内存在大量的孔隙.具备这种结构的球形氢氧化镍活性物质在Ni-MH电池的充放电过程中可能具有良好的力学稳定性及质子和电子传导性能.

关 键 词:球形Ni(OH)2  聚集  沉淀-结晶工艺  Ni-MH电池
文章编号:1001-9731(2005)10-1629-05
收稿时间:2005-03-25
修稿时间:2005-05-10

Formation of microstructures for spherical Ni(OH)2 particles
SHEN Xiang-qian,PENG Mei-xun,JING Mao-xiang,WEI Ya-hui.Formation of microstructures for spherical Ni(OH)2 particles[J].Journal of Functional Materials,2005,36(10):1629-1633.
Authors:SHEN Xiang-qian  PENG Mei-xun  JING Mao-xiang  WEI Ya-hui
Affiliation:1. School of Material Science and Engineering, Jiangsu University, Zhenjiang 212013, China; 2. Changsha Research Institute of Mineral and Metallurgy, Changsha 410012, China; 3. State Key Laboratory for Powder Metallurgy, Central South University, Changsha 410083, China
Abstract:The formation of microstructures for spherical Ni(OH)2particles synthesized by the aqueous precipitation-crystalliza-tion process in a continuous stirring-tank reactor(CSTR) has been investigated by scanning electron microscopy(SEM) andtransmission electron microscopy(TEM).The growth of spherical Ni(OH)2particles pri marily depends on the aggregation ratein CSTR.It is assumed that the agglomeration acts on the formation of both surface and inner structures of the spherical Ni(OH)2particles.The surface structure may be formed by the self-assembling coalescence of newlyformed nano-crystallites whilethe inner structure of spherical Ni(OH)2characterized with radially arranged crystals can be attributed to the re-crystallizationprocessing,which turns reversible aggregations to irreversible integrated agglomerations.The macro-spherical nickel hydroxideparticle characterizes with the microstructure,which consists of largely radially arranged plate-like crystallites and among theseplate-like crystallites there are full of pores and crannies to forma network structure.This structure will benefit i mprovementsfor electrochemical performances of nickel hydroxides as the active positive materials in Ni-MH batteries due to a potential en-hancement of proton diffusion and electronic conductivity in the materials and mechanical stability during charge/dischargeprocesses.
Keywords:spherical Ni(OH)2  aggregation  precipitation-crystallization process  Ni-MH battery
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