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在正己醇中用蒙脱土制备的高度稳定的银纳米粒子的表征及光化学和抗菌性能。

Characterization and photochemical and antibacterial properties of highly stable silver nanoparticles prepared on montmorillonite clay in n-hexanol.

机构信息

Department of Radiological Technology, School of Medical Sciences, The University of Tokushima, Tokushima 770-8503, Japan.

出版信息

J Colloid Interface Sci. 2010 May 15;345(2):433-41. doi: 10.1016/j.jcis.2010.01.034. Epub 2010 Jan 18.

Abstract

Ag nanoparticles (NPs) of approximately 2.5±0.6 nm in size with high stability were prepared on montmorillonite clay in n-hexanol ([Ag NP/clay]). The aqueous suspensions of Ag NP/clay obtained were colored pale yellow to gray, and an intense yellow surface plasmon band was observed at approximately 397-422 nm at a [Ag(+)] concentration of 0.01-1 M. Fluorescence peaks of these Ag NP/clay suspensions, which were due to interband transitions of Ag NPs, were observed at approximately 447 nm upon excitation at approximately 341 nm. Photoinduced charge separation and electron accumulation in the presence of 2-propanol were observed in the Ag NPs on the clay. The photogenerated holes indicate a reaction with OH(-) because the generation of (·)OH radicals decreased in the presence of 2-propanol, as observed using a spin-trapping electron spin resonance (ESR) method. The amount of H(2) produced depended on the amount of Ag NPs on the clay and the concentration of 2-propanol in the suspension. Antibacterial activity of Ag NPs on clay was also observed against Escherichia coli even after 12 years. This simple method of preparation in n-hexanol led to the successful formation of highly stable and photoactive Ag NPs on montmorillonite clay.

摘要

Ag 纳米颗粒(NPs)的大小约为 2.5±0.6nm,具有高稳定性,在正己醇中负载在蒙脱石粘土上([Ag NP/粘土])。所得 Ag NP/粘土的水悬浮液呈浅黄色到灰色,在 [Ag(+)]浓度为 0.01-1M 时,观察到约 397-422nm 的强黄色表面等离子体带。当用约 341nm 激发时,这些 Ag NP/粘土悬浮液的荧光峰归因于 Ag NPs 的能带间跃迁,在约 447nm 处观察到。在存在 2-丙醇的情况下,在粘土上的 Ag NPs 中观察到光诱导的电荷分离和电子积累。光生空穴表明与 OH(-)的反应,因为在存在 2-丙醇的情况下,观察到·OH 自由基的生成减少,这是使用自旋捕获电子自旋共振 (ESR) 方法观察到的。产生的 H(2)的量取决于粘土上的 Ag NPs 的量和悬浮液中 2-丙醇的浓度。即使在 12 年后,粘土上的 Ag NPs 对大肠杆菌也表现出抗菌活性。这种在正己醇中的简单制备方法导致高度稳定和光活性的 Ag NPs 在蒙脱石粘土上的成功形成。

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