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Fabrication of copper nanorods by low-temperature metal organic chemical vapor deposition
作者姓名:ZHANG  Ying  Frank  Leung-Yuk  Lam  HU  Xijun  YAN  Zifeng
作者单位:[1]State Key Laboratory for Heavy Oil Processing, Key Laboratory of Catalysis, CNPC, University of Petroleum, Dongying 257061, China [2]Department of chemical Engineering, The Hong Kong University of Science and Technology, JiuLong, Hong Kong, China
基金项目:Acknowledgements The authors aye grateful to Prof. Ping Sheng for stimulating discussion. This projecl was supported by the Research Grants Council of Hong Kong under the Central Allocation Vote scheme with a grant No. CA04105.SC02.
摘    要:Copper nanorods have been synthe-sized in mesoporous SBA-15 by a low-temperature metal organic chemical vapor deposition (MOCVD) employing copper (II) acetylacetonate, Cu(acac)2, and hydrogen as a precursor and reactant gas, re- spectively. The hydrogen plays an important role in chemical reduction of oganometallic precursor which enhances mass transfer in the interior of the SBA-15 porous substrate. Such copper nanostructures are of great potentials in the semiconductor due to their unusual optical, magnetic and electronic properties. In addition, it has been found that chemically modi- fying the substrate surface by carbon deposition is crucial to such synthesis of copper nanostructures in the interior of the SBA-15, which is able to change the surface properties of SBA-15 from hydrophilic to hydrophobic to promote the adsorption of organic cupric precursor. It has also been found that the copper nanoparticles deposited on the external sur- face are almost eliminated and the copper nanorods are more distinct while the product was treated with ammonia. This approach could be achieved under a mild condition: a low temperature (400℃) and vac-uum (2 kPa) which is extremely milder than the con- ventional method. It actually sounds as a foundation which is the first time to synthesize a copper nanorod at a mild condition of a low reaction temperature and pressure.

关 键 词:化学蒸气沉积法    有机金属分解  低温  MOCVD
文章编号:10.1007/s11434-006-2128-7
收稿时间:2006-04-13
修稿时间:2006-04-132006-07-11

Fabrication of copper nanorods by low-temperature metal organic chemical vapor deposition
ZHANG Ying Frank Leung-Yuk Lam HU Xijun YAN Zifeng.Fabrication of copper nanorods by low-temperature metal organic chemical vapor deposition[J].Chinese Science Bulletin,2006,51(21):2662-2668.
Authors:Ying Zhang  Frank Leung-Yuk Lam  Xijun Hu  Zifeng Yan
Institution:(1) State Key Laboratory for Heavy Oil Processing, Key Laboratory of Catalysis, CNPC, University of Petroleum, Dongying, 257061, China;(2) Department of Chemical Engineering, The Hong Kong University of Science and Technology, JiuLong, Hong Kong, China
Abstract:Copper nanorods have been synthesized in mesoporous SBA-15 by a low-temperature metal organic chemical vapor deposition (MOCVD) employing copper (II) acetylacetonate, Cu(acac)2, and hydrogen as a precursor and reactant gas, respectively. The hydrogen plays an important role in chemical reduction of organometallic precursor which enhances mass transfer in the interior of the SBA-15 porous substrate. Such copper nanostructures are of great potentials in the semiconductor due to their unusual optical, magnetic and electronic properties. In addition, it has been found that chemically modifying the substrate surface by carbon deposition is crucial to such synthesis of copper nanostructures in the interior of the SBA-15, which is able to change the surface properties of SBA-15 from hydrophilic to hydrophobic to promote the adsorption of organic cupric precursor. It has also been found that the copper nanoparticles deposited on the external surface are almost eliminated and the copper nanorods are more distinct while the product was treated with ammonia. This approach could be achieved under a mild condition: a low temperature (400°C) and vacuum (2 kPa) which is extremely milder than the conventional method. It actually sounds as a foundation which is the first time to synthesize a copper nanorod at a mild condition of a low reaction temperature and pressure.
Keywords:copper nanorods  chemical vapour deposition  organic metal decomposition in low temperature  
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