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洗衣剂表面活性剂对银纳米颗粒表面电荷和胶体稳定性的影响。

Effect of laundry surfactants on surface charge and colloidal stability of silver nanoparticles.

机构信息

KTH Royal Institute of Technology, School of Chemical Science and Engineering, Stockholm, Sweden.

出版信息

Langmuir. 2013 Jul 16;29(28):8882-91. doi: 10.1021/la4012873. Epub 2013 Jul 2.

Abstract

The stability of silver nanoparticles (Ag NPs) potentially released from clothing during a laundry cycle and their interactions with laundry-relevant surfactants [anionic (LAS), cationic (DTAC), and nonionic (Berol)] have been investigated. Surface interactions between Ag NPs and surfactants influence their speciation and stability. In the absence of surfactants as well as in the presence of LAS, the negatively charged Ag NPs were stable in solution for more than 1 day. At low DTAC concentrations (≤1 mM), DTAC-Ag NP interactions resulted in charge neutralization and formation of agglomerates. The surface charge of the particles became positive at higher concentrations due to a bilayer type formation of DTAC that prevents from agglomeration due to repulsive electrostatic forces between the positively charged colloids. The adsorption of Berol was enhanced when above its critical micelle concentration (cmc). This resulted in a surface charge close to zero and subsequent agglomeration. Extended DLVO theory calculations were in compliance with observed findings. The stability of the Ag NPs was shown to depend on the charge and concentration of the adsorbed surfactants. Such knowledge is important as it may influence the subsequent transport of Ag NPs through different chemical transients and thus their potential bioavailability and toxicity.

摘要

研究了在洗衣周期中衣物释放的银纳米颗粒(Ag NPs)的稳定性及其与洗衣相关的表面活性剂(阴离子(LAS)、阳离子(DTAC)和非离子(Berol))的相互作用。Ag NPs 和表面活性剂之间的表面相互作用会影响它们的形态和稳定性。在没有表面活性剂以及存在 LAS 的情况下,带负电荷的 Ag NPs 在溶液中稳定超过 1 天。在低 DTAC 浓度(≤1mM)下,DTAC-Ag NP 相互作用导致电荷中和和团聚体的形成。由于 DTAC 的双层类型形成,颗粒的表面电荷在较高浓度下变为正,这由于带正电荷的胶体之间的排斥静电作用力而防止了聚集。当 Berol 的浓度超过其临界胶束浓度(cmc)时,其吸附增强。这导致表面电荷接近零,随后发生聚集。扩展的 DLVO 理论计算与观察到的结果相符。Ag NPs 的稳定性取决于吸附表面活性剂的电荷和浓度。此类知识很重要,因为它可能会影响 Ag NPs 通过不同化学瞬变的后续迁移,从而影响其潜在的生物利用度和毒性。

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