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ZnO纳米电缆的制备、结构和生长机理

Synthesis, Growth Mechanism and Microstructure of ZnO Nanocables

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【作者】 贺建黄运华张跃顾有松纪箴周成

【Author】 HE, Jian1 HUANG, Yun-Hua1 ZHANG, Yue1,2 GU, You-Song1 JI, Zhen1 ZHOU, Cheng1(1Department of Materials Physics and Chemistry; 2State Specialistic Laboratory on Solid Electrolytes and Metallurgical Testing Techniques, Beijing University of Science and Technology, Beijing 100083)

【机构】 北京科技大学材料物理与化学系北京科技大学材料物理与化学系 北京100083北京100083北京100083 北京科技大学固体电解质冶金测试技术国家专业实验室北京100083

【摘要】 以混合的锌粉和锡粉作为原料,通过热蒸发的方法在沉积有金膜的硅基片上制备出具有“芯线-壳层”同轴结构的ZnO/SiOx纳米电缆.扫描和透射电镜的研究表明,这种纳米电缆的产量很高,长度达到数个微米,并且确认了其“芯线-壳层”的独特结构.不同于以往ZnO一维纳米材料的三个快速生长方向〈0001〉、〈0110〉及〈2110〉,其ZnO芯线的生长方向为[2021].本实验中锡粉和金膜分别作为抑制剂和催化剂,通过控制锌粉的蒸发速率以及金硅共熔反应使ZnO纳米电缆在硅基片上得到一维生长.这种纳米电缆可望在纳米尺度的电路、电器以及力学和光学信号的耦合和转换方面得到应用.

【Abstract】 ZnO nanocables were synthesized on gold coated silicon(100) substrate by zinc powder evaporation at 550 ℃. The source materials were pure zinc and tin powders with mass ratio of 1∶1 and the experiment was car-ried out under a constant flow of Ar(98%)/O2(2%) gas mixture(300 sccm(standard cubic centimeters per minute) in a quartz tube. SEM images showed that the nanocables were obtained in large-scale and the diameters and lengths of the nanocables were about 50 nm and several micrometers respectively. XRD, TEM and EDX investigations con-firmed the core-shell structure, i.e. the core zone was single crystalline ZnO and the shell zone was SiOx amor-phous layer. Interestingly, the ZnO core was grown along a unique direction of [2021], which was quite different from the conventional fast growth direction of<0001>, <0110> and <2110>of 1D ZnO nanoscale materials. A possible mechanism was also proposed. Firstly, gold film served as catalyst and the nanocables grew out from the surface of Au-Si-Zn liquid alloys; secondly, tin powders were used as inhibitor to keep a low partial pressure of zinc vapor.

【关键词】 纳米电缆氧化锌氧化硅制备生长机理
【Key words】 NanocablesZnOSiOxSynthesisGrowth mechanism
【基金】 国家自然科学重点基金(50232030);国家杰出青年基金(50325209);教育部科技研究重点项目(104022);教育部留学回国人员科研启动重点基金(01-498)资助~~
  • 【文献出处】 物理化学学报 ,Acta Physico-chimica Sinica , 编辑部邮箱 ,2005年06期
  • 【分类号】TB383
  • 【被引频次】13
  • 【下载频次】349
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