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Enhancement of antibacterial properties of Ag nanorods by electric field

机译:电场增强银纳米棒的抗菌性能

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摘要

The effect of an electric field on the antibacterial activity of columnar aligned silver nanorods was investigated. Silver nanorods with a polygonal cross section, a width of 20–60 nm and a length of 260–550 nm, were grown on a titanium interlayer by applying an electric field perpendicular to the surface of a Ag/Ti/Si(100) thin film during its heat treatment at 700 °C in an Ar+H2 environment. The optical absorption spectrum of the silver nanorods exhibited two peaks at wavelengths of 350 and 395 nm corresponding to the main surface plasmon resonance bands of the one-dimensional silver nanostructures. It was found that the silver nanorods with an fcc structure were bounded mainly by {100} facets. The antibacterial activity of the silver nanorods against Escherichia coli bacteria was evaluated at various electric fields applied in the direction of the nanorods without any electrical connection between the nanorods and the capacitor plates producing the electric field. Increasing the electric field from 0 to 50 V cm−1 resulted in an exponential increase in the relative rate of reduction of the bacteria from 3.9×10−2 to 10.5×10−2 min−1. This indicates that the antibacterial activity of silver nanorods can be enhanced by applying an electric field, for application in medical and food-preserving fields.
机译:研究了电场对圆柱状排列的银纳米棒的抗菌活性的影响。通过施加垂直于Ag / Ti / Si(100)薄膜表面的电场,在钛中间层上生长具有多边形横截面,宽度为20-60 nm,长度为260-550 nm的银纳米棒。薄膜在Ar + H2环境中在700°C的热处理条件下进行处理。银纳米棒的光吸收光谱在350和395nm的波长处显示出两个峰,其对应于一维银纳米结构的主表面等离子体共振带。发现具有fcc结构的银纳米棒主要由{100}小面界定。在纳米棒方向上施加的各种电场下,在纳米棒与产生电场的电容器板之间没有任何电连接的情况下,评估了纳米银棒对大肠杆菌的抗菌活性。将电场从0 V增加到50 V cm -1 导致细菌相对减少率从3.9×10 -2 到10.5×10呈指数增长 −2 min -1 。这表明,通过施加电场,可以将银纳米棒的抗菌活性增强,用于医疗和食品保存领域。

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