TiO2/Ag纳米粒子双层膜的结构和荧光性质

M. Kadhum, T. Mubarak, N. Jassim
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引用次数: 0

摘要

采用脉冲液体激光烧蚀(PLAL)技术制备TiO2 / Ag杂化纳米粒子,提高了纳米粒子的光学性能。采用波长(1064 nm)、烧蚀能量(530 mJ)和重复频率(1Hz)的调q Nd-YAG激光器,研究了脉冲数(450)对以蒸馏水(DW)为生长介质制备的纳米颗粒结构和光学性质的影响。目标与透镜之间的距离(10厘米)。对制备的样品进行x射线衍射分析、傅里叶红外变换、透射电镜和荧光分析等诊断。对沉积在载玻片上的纳米银的x射线衍射分析结果表明,纳米银的晶体体系为立方晶和多晶,在晶体水平上方向以[111]为主。对沉积在玻璃载玻片上的二氧化钛纳米颗粒溶液的x射线衍射分析结果显示存在四边形晶体体系,表明(金红石)中存在二氧化钛颗粒,并且晶体水平的主要趋势是[110]。用FTIR技术测定了液体介质中(TiO2 / Ag)的官能团。此外,TEM图像显示纳米颗粒和微颗粒几乎呈球形。对(TiO2 / Ag)杂化粒子的荧光测量结果表明,该图的峰值为(284.1)nm和(418.3)nm。这与混合银和二氧化钛纳米粒子溶液的吸收光谱结果大致相同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural and Fluorescence Properties of TiO2/Ag Nanoparticles Bilayers
The optical properties of the TiO2 / Ag hybrid nanoparticles were improved as the particles were prepared with a pulsed liquid laser ablation (PLAL) technology. The effect of number of pulses (450) on the structural and optical properties of nanoparticles prepared in distilled water (DW) as growth media was examined using a Q-Switched Nd-YAG laser with wavelength (1064 nm), ablation energy (530 mJ) and repetition rate (1Hz). The distance between the target and the lens (10 cm). Several were used for the diagnosis such as X-ray diffraction analysis, fourier infrared transformations, TEM assays and fluorescence of the prepared samples. The results of X-ray diffraction analysis of the silver nanoparticles deposited on a glass slide showed that the crystal system is cubic and polycrystalline, with the direction being dominated by [111] at the level of the crystals. The results of X-ray diffraction analysis of a solution of titanium dioxide nanoparticles deposited on a glass slide revealed the presence of a quadrangular crystal system, indicating the presence of titanium dioxide particles in (rutile), and that the prevailing trend for crystalline levels is [110]. The functional groups of (TiO2 / Ag) were determined in the liquid medium by the (FTIR) technique. Also, TEM images showed the presence of nanoparticles and microparticles in an almost spherical shape. The fluorescence measurement of (TiO2 / Ag) hybrid particles showed that through the graph the peak values of (284.1) and (418.3) nm. This is roughly identical to the absorption spectrum results of a hybrid silver and titanium dioxide nanoparticle solution.
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