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电化学(中英文) ›› 2006, Vol. 12 ›› Issue (4): 403-407. 

• 研究论文 • 上一篇    下一篇

聚合物保护贵金属纳米粒子的相转移技术

冯兴丽;黄明湖;张晓凯;黄绍鑫;潘伟;马厚义;   

  1. 山东大学化学与化工学院,哈尔滨工业大学(威海)海洋学院,山东师范大学理化分析测试中心,山东大学化学与化工学院,山东大学化学与化工学院,山东大学化学与化工学院 山东济南250100,山东威海264209,山东济南250014,山东济南250100,山东济南250100,山东济南250100
  • 收稿日期:2006-11-28 修回日期:2006-11-28 出版日期:2006-11-28 发布日期:2006-11-28

Phase-Transfer Technique for Polymer-Protected Noble Metal Nanoparticles

FENG Xing-li~   

  1. (1),HUANG Ming-hu~(2),ZHANG Xiao-kai~(3), HUANG Shao-xin~(1),PAN Wei~(1),MA Hou-yi~(*1)(1.School of Chemistry and Chemical Engineering,Shandong University,Jinan 250100,Shandong,China,2.School of the Ocean,Harbin Institute of Technology at Weihai,Weihai 264209,Shandong,China;3.Analysis and Testing Center,Shandong Normal University,Jinan 250014,Shandong,China
  • Received:2006-11-28 Revised:2006-11-28 Published:2006-11-28 Online:2006-11-28

摘要: 依据聚乙烯吡咯烷酮(PVP)在水中的溶解度随温度升高而降低的特性,建立了将PVP保护的金、银、铂纳米粒子从水相转移到油相的简单而有效的相转移技术.方法是利用电化学还原法先于水溶液中制备粒度均匀的金属纳米粒子,然后向电化学合成后的金属纳米水溶胶中加入适量正丁醇,在搅拌条件下升温至80℃即可使金属纳米粒子从水相转移至有机相.纳米粒子的相转移效率很高,而且相转移后粒子在油相中分散很好,没有团聚现象发生.在此基础上进一步建立在油水混合体系电化学合成金属纳米粒子的实验方法,为收集纳米粒子和制备纳米粒子薄膜提供了新的有效途径.

关键词: 纳米粒子, 相转移, 聚乙烯吡咯烷酮(PVP)

Abstract: A novel phase-transfer method was developed based on the decrease of PVP's solubility in water with increasing temperature,by means of which PVP-protected gold,silver and platinum nanoparticles can be conveniently transferred from aqueous phase to 1-butanol phase.Monodispersed metal nanoparticles were electrochemically synthesized at first in the aqueous,and then 1-butanol of appropriate volume was added to the aqueous phase.Heating the oil-water mixture to 80 ℃ under vigorous stirring would make metal nanoparticles leave the aqueous phase and enter into the 1-butanol phase,with high phasetransfer efficiency and without aggregation between nanoparticles.An electrochemical method to synthesize metal nanoparticles in the oil-water mixtures was further established,which provides a new path for collection of nanoparticles and preparation of metal nanofilms.

Key words: Nanoparticles, Phase-transfer, Poly(N-vinylpyrrolidone)(PVP), Electrochemical synthesis, Oil/water interface

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