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首页> 外文期刊>Journal of Colloid and Interface Science >A novel method for the preparation of silver chloride nanoparticles starting from their solid powder using microemulsions
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A novel method for the preparation of silver chloride nanoparticles starting from their solid powder using microemulsions

机译:一种使用微乳液从固体粉末开始制备氯化银纳米颗粒的新方法

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摘要

A novel method of preparing AgCl nanoparticles by mixing AgCl powder and a microemulsion consisting of dioctyldimethylammonium chloride-decanol/water/isooctane is introduced. This new method was discovered during the preparation of AgCl nanoparticles in single microemulsions by direct reaction with the dioctyldimethylammonium chloride surfactant counterion. The effect of the following variables on the concentration of the colloidal AgCl nanoparticles (the nanoparticle uptake) and the particle size were studied: (1) operating variables, including mixing and temperature, and (2) microemulsion variables, including surfactant and cosurfactant concentration, and water to surfactant mole ratio. Manipulating these variables provides an insight into the role of the surfactant surface layer rigidity on the phenomenon. The results were explained by the effect of these variables on reaction rates and the colloidal nanoparticle stability. Mixing had a significant effect on the nanoparticle uptake. At 300 rpm an equilibrium AgCI nanoparticle uptake was achieved in about I h, while without mixing only 5% of the equilibrium value was reached even after 24 h. An optimum temperature was found for which a maximum nanoparticle uptake was obtained. At higher temperatures, the nanoparticle uptake declined. The nanoparticle uptake increased linearly with the surfactant concentration, and the particle size increased as well. A monotonic decrease in the nanoparticle uptake accompanied by an increase in the particle size was observed when increasing n-decanol concentration or the water to surfactant mole ratio. (c) 2005 Elsevier Inc. All rights reserved.
机译:介绍了一种新的AgCl纳米颗粒的制备方法,该方法是将AgCl粉末与由二辛基二甲基氯化铵/正癸醇/水/异辛烷组成的微乳液混合。通过与二辛基二甲基氯化铵表面活性剂抗衡离子直接反应,在单微乳状液中制备AgCl纳米颗粒的过程中发现了这种新方法。研究了以下变量对胶体AgCl纳米颗粒浓度(纳米颗粒吸收)和粒径的影响:(1)操作变量,包括混合和温度,以及(2)微乳液变量,包括表面活性剂和助表面活性剂的浓度,和水与表面活性剂的摩尔比。操纵这些变量可洞察表面活性剂表面层刚度对现象的作用。这些变量对反应速率和胶体纳米颗粒稳定性的影响解释了结果。混合对纳米颗粒的吸收具有显着影响。在300 rpm下,大约1小时内就达到了平衡AgCl纳米颗粒的吸收,而即使不混合,甚至在24小时后也只能达到5%的平衡值。找到最佳温度,获得最大的纳米颗粒吸收。在更高的温度下,纳米颗粒的吸收下降。纳米颗粒的吸收随着表面活性剂浓度的增加而线性增加,并且粒度也增加。当增加正癸醇浓度或水与表面活性剂的摩尔比时,观察到纳米粒子吸收量的单调减少并伴随着粒径的增加。 (c)2005 Elsevier Inc.保留所有权利。

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