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在油包水(w/o)微乳液中制备金属纳米颗粒。

Preparation of metal nanoparticles in water-in-oil (w/o) microemulsions.

作者信息

Capek I

机构信息

Polymer Institute, Slovak Academy of Sciences, Dúbravská cesta 9, 842 36 Bratislava, Slovakia.

出版信息

Adv Colloid Interface Sci. 2004 Jun 30;110(1-2):49-74. doi: 10.1016/j.cis.2004.02.003.

Abstract

The use of an inorganic phase in water-in-oil microemulsions has received considerable attention for preparing metal particles. This is a new technique, which allows preparation of ultrafine metal particles within the size range 5 nm<particle diameter<50 nm. This article presents a review of the current literature in the field of particle preparation of several metals such as silver, copper, cadmium, cobalt, nickel, cadmium and gold in the inverse microemulsion systems. The reactant metal salts and reducing agents are mostly soluble in water and therefore the nucleation of metal particles proceeds in the water pools of the microemulsion. The rate of particle nucleation is a function of the percolation degree of microemulsion droplets. Besides a short introduction into some aspects of the microemulsion types and formation, we mainly focus on the kinetics of metallic particle formation. Effects of stabilizer (emulsifier) type and concentration and the type of continuous phase, reducing agent and additive on the particle formation are summarized and evaluated. The influence of several other parameters such as temperature, the incident light, the nature of metal salts and reaction conditions are also reviewed. These results indicate that the nature of the stabilizer emulsifier, the surface activity of additives and the colloidal stability of microemulsion droplets play decisive role on the particle size and distribution during the preparation of metal particles.

摘要

在油包水型微乳液中使用无机相来制备金属颗粒已受到广泛关注。这是一项新技术,能够制备粒径范围在5纳米<粒径<50纳米的超细金属颗粒。本文综述了在反相微乳液体系中制备银、铜、镉、钴、镍、镉和金等几种金属颗粒领域的当前文献。反应金属盐和还原剂大多可溶于水,因此金属颗粒的成核过程在微乳液的水池中进行。颗粒成核速率是微乳液滴渗透程度的函数。除了对微乳液类型和形成的一些方面进行简短介绍外,我们主要关注金属颗粒形成的动力学。总结并评估了稳定剂(乳化剂)类型和浓度、连续相类型、还原剂和添加剂对颗粒形成的影响。还综述了其他几个参数的影响,如温度、入射光、金属盐的性质和反应条件。这些结果表明,稳定剂乳化剂的性质、添加剂的表面活性和微乳液滴的胶体稳定性在金属颗粒制备过程中对粒径和分布起着决定性作用。

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