Institutional Repository of Chinese Acad Sci, Inst Solid State Phys, Hefei 230031, Anhui, Peoples R China
Initial Growth of Single-Crystalline Nanowires: From 3D Nucleation to 2D Growth | |
Huang,XH1,3; Li,GH1![]() | |
2010-04-17 | |
发表期刊 | Nanoscale Research Letters
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ISSN | 1556-276X |
摘要 | AbstractThe initial growth stage of the single-crystalline Sb and Co nanowires with preferential orientation was studied, which were synthesized in porous anodic alumina membranes by the pulsed electrodeposition technique. It was revealed that the initial growth of the nanowires is a three-dimensional nucleation process, and then gradually transforms to two-dimensional growth via progressive nucleation mechanism, which resulting in a structure transition from polycrystalline to single crystalline. The competition among the nuclei inside the nanoscaled-confined channel and the growth kinetics is responsible for the structure transition of the initial grown nanowires. |
关键词 | Nanowire Electrodeposition Anodic alumina membrane Initial growth mechanism |
DOI | 10.1007/s11671-010-9602-5 |
语种 | 英语 |
WOS记录号 | BMC:10.1007/s11671-010-9602-5 |
出版者 | Springer New York |
引用统计 | |
文献类型 | 期刊论文 |
条目标识符 | http://ir.hfcas.ac.cn:8080/handle/334002/34628 |
专题 | 中科院固体物理研究所 |
通讯作者 | Li,GH |
作者单位 | 1.Institute of Solid State Physics, Chinese Academy of Sciences; Key Laboratory of Material Physics, Anhui Key Laboratory of Nanomaterials and Nanotechnology 2.Nanyang Technological University; School of Mechanical and Aerospace Engineering 3.National University of Singapore; Department of Electrical and Computer Engineering |
推荐引用方式 GB/T 7714 | Huang,XH,Li,GH,Sun,GZ,et al. Initial Growth of Single-Crystalline Nanowires: From 3D Nucleation to 2D Growth[J]. Nanoscale Research Letters,2010,5(6):1-6. |
APA | Huang,XH,Li,GH,Sun,GZ,Dou,XC,Li,L,&Zheng,LX.(2010).Initial Growth of Single-Crystalline Nanowires: From 3D Nucleation to 2D Growth.Nanoscale Research Letters,5(6),1-6. |
MLA | Huang,XH,et al."Initial Growth of Single-Crystalline Nanowires: From 3D Nucleation to 2D Growth".Nanoscale Research Letters 5.6(2010):1-6. |
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