Green Synthesis of Metal Nanostructures and Its Nonlinear Optical Properties

E. Ramya
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引用次数: 1

Abstract

Simple green synthesis of metal nanoparticles (Ag NPs) was prepared by using Raphanussativus leaf extract. This extract acts as reduce and stabilizing agent. The formation of silver NPs was confirmed and characterized by XRD, UV–visible absorption spectrum, TEM, and FTIR. The luminescence enhancement and quenching of Eu3+and Sm3+ ions were observed in the presence of silver NPs. The luminescence enhancement is owing to arise in the electric-dipole transition with alteration of the field around Ln3+ ions. Nonlinear studies in femtosecond (fs) and picosecond (ps) time scales have been studied by using the Z-scan technique. Third-order nonlinear optical susceptibility of silver nanoparticles was obtained with Degenerate Four-Wave Mixing (DFWM) in the fs regime. The lifetimes of lanthanum complexes were increased by the concentration of silver NPs and decreased for further silver. The high enhanced luminescence and nonlinear studies of green synthesized silver nanoparticles can be used in optics and bio applications.
金属纳米结构的绿色合成及其非线性光学性质
以莴苣叶提取物为原料,制备了简单的绿色合成金属纳米颗粒(Ag NPs)。这种提取物起还原剂和稳定剂的作用。通过XRD、uv -可见吸收光谱、TEM、FTIR等表征了银NPs的形成。在银纳米粒子的存在下,Eu3+和Sm3+离子的发光增强和猝灭。发光增强是由于电偶极子跃迁引起Ln3+离子周围电场的改变。利用z扫描技术对飞秒(fs)和皮秒(ps)时间尺度的非线性研究进行了研究。利用简并四波混频(DFWM)在fs波段获得了银纳米粒子的三阶非线性光磁化率。镧配合物的寿命随银NPs浓度的增加而增加,随银浓度的增加而降低。绿色合成纳米银的高增强发光和非线性研究可用于光学和生物领域。
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