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Promising method for preparation the PVA/Ag nanocomposite and Ag nano-rods

机译:有希望的PVA / Ag纳米复合材料和Ag纳米棒的制备方法

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Both the PVA/Ag nanocomposite films and the Ag nano-rods were successfully prepared by using the gamma irradiation method. The PVA/Ag nanocomposite films prepared at different g irradiation doses (25, 50, 75 and 100 KGy). The Ag nano-rods prepared at a specific conditions at (125 KGy). For the PVA/Ag nanocomposites, the UV-Vis spectrophotometer and PL spectrophotometer were used to characterize the films. The optical absorption spectra for all samples over the wavelength range 190-800 nm were recorded. There are two absorption peaks were observed. One peak at 200 nm which attributed to (n-pi*) transition for PVA and another peak at 427 nm for the formed Ag nanoparticles. Photoluminescence showed a peak at 646 nm and its intensity increase with increasing the gamma doses. For preparing the Ag nano-rods, the SEM images of the films revealed the presence of two types of silver particles one is AgNO3 and the other Ag nanoparticles on the front surface of the (0 KGy) nanocomposite films. With increasing the gamma doses until 125 KGy the Ag nanoparticles appears on the back surface as a nano-rods. The SEM images showed that the obtained Ag nano-rod of different length: diameter (1.813 mu m: 89.125 nm) and (2.912 mu m: 88.851 nm) with aspect ratio (length: diameter = 16: 1 to 32: 1). The effect of the PVA concentration on the formation of Ag nanoparticles was confirmed by using SEM images, and we obtained that the length of Ag nano-rods on the back surface increase with increasing the PVA concentration at g irradiation dose 125 KGy. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过使用γ辐射法成功制备PVA / Ag纳米复合膜和Ag纳米棒。在不同G照射剂量(25,50,75和100kGy)以不同的PVA / Ag纳米复合膜。在(125kGy)的特定条件下制备的Ag纳米棒。对于PVA / Ag纳米复合材料,UV-Vis分光光度计和PL分光光度计用于表征薄膜。记录了波长范围内的所有样品的光学吸收光谱,记录了190-800nm的所有样品。观察有两个吸收峰。 200nm的一个峰值,其归因于PVA的(N-PI *)转变为PVA和427nm的另一种峰,用于形成的Ag纳米颗粒。光致发光在646nm处显示出峰值,并且其强度随着增加γ剂量而增加。为了制备Ag纳米棒,薄膜的SEM图像显示出两种类型的银颗粒的存在是(0kGy)纳米复合膜的前表面上的AgNO 3和其他Ag纳米颗粒。随着γ剂量的增加,直到125 kgy,Ag纳米颗粒作为纳米棒出现在后表面上。 SEM图像显示,所获得的Ag纳米棒不同的长度:直径(1.813μm:89.125nm)和(2.912 mu m:88.851nm),纵横比(长度:直径= 16:1至32:1)。通过使用SEM图像确认PVA浓度对Ag纳米颗粒形成的影响,得到了在G辐射剂量125kGy的PVA浓度增加后表面增加的Ag纳米棒上的长度增加。 (c)2018年elestvier b.v.保留所有权利。

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