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首页> 外文期刊>Physica status solidi >Study of Tunable Plasmonic, Photoluminscence, and Nonlinear Optical Behavior of Ag Nanoclusters Embedded in a Glass Matrix for Multifunctional Applications
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Study of Tunable Plasmonic, Photoluminscence, and Nonlinear Optical Behavior of Ag Nanoclusters Embedded in a Glass Matrix for Multifunctional Applications

机译:银纳米团簇嵌入玻璃基质中用于多功能应用的可调谐等离子,光致发光和非线性光学行为的研究

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摘要

Plasmonic based hybrid noble metal nanoclusters (NCs) have gained much interest in various technological applications such as optoelectronics, photonic devices and nonlinear media including biomedical applications due to their tunable optical properties. Here, Ag NCs are grown as embedded in glass using simple ionexchange process and effect of various parameter including post thermal treatment is studied on tunability of their optical behavior (plasmonic, optical nonlinearity, and photoluminescence properties) in view of their potential applications in nanophotonics devices and as nonlinear media. The tunable optical, structural and thermodynamic properties associated with the rapid growth and agglomeration of Ag NCs in the glass is also studied under the post thermal treatment process. The various techniques such as XRD, RBS, Zscan and UVvis, XPS, PL and TEM are used for characterizing ion exchanged samples. A blue shift of 15nm is observed significantly in optical absorbance as a function of post thermal treatment. Open and closed aperture Zscan experiments show strong nonlinear absorption coefficients for the Ag NCs. The thermodynamic parameters such as enthalpy (H), entropy (S) and Gibbs energy (G) for the nucleation and growth of the Ag NCs in the glass matrix are calculated at different temperatures with an activation energy of 59kJmol1 obtained by the Arrhenius linear equation and a model is suggested. In addition, these Ag NCs embedded glasses exhibit good antimicrobial activities (against E. coli bacteria) with a change in antibacterial behavior at higher annealing temperature indicating their multifunctional applications.
机译:基于等离子的混合贵金属纳米簇(NC)由于其可调节的光学特性,在各种技术应用(例如光电子,光子器件和非线性介质,包括生物医学应用)中引起了人们的极大兴趣。在这里,使用简单的离子交换工艺将Ag NCs嵌入玻璃中生长,并考虑了其在纳米光子学设备中的潜在应用,研究了包括后热处理在内的各种参数对它们的光学行为(等离激元,光学非线性和光致发光特性)的可调性。并作为非线性介质。在后热处理过程中,还研究了与玻璃中Ag NCs的快速生长和附聚相关的可调光学,结构和热力学性质。 XRD,RBS,Zscan和UVvis,XPS,PL和TEM等各种技术用于表征离子交换样品。热处理后,光吸收率显着观察到15nm的蓝移。开孔和闭孔Zscan实验表明,Ag NCs具有很强的非线性吸收系数。在不同温度下,通过Arrhenius线性方程获得的激活能为59kJmol1,计算出玻璃基质中Ag NCs成核和生长的焓(H),熵(S)和吉布斯能(G)等热力学参数。并建议一个模型。此外,这些Ag NCs嵌入式玻璃还具有良好的抗菌活性(针对大肠杆菌),并且在较高的退火温度下其抗菌性能发生了变化,表明它们具有多种用途。

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  • 来源
    《Physica status solidi》 |2019年第4期|1800768.1-1800768.18|共18页
  • 作者单位

    Department of Physics,University of the Free State,Bloemfontein,South Africa;

    Department of Physics,Universidade de Brasília,Brasilia,DF;

    Department of Physics,University of the Free State,Bloemfontein,South Africa;

    Advanced Centre for Research in High Energy Materials (ACRHEM),University of Hyderabad,Telangana,India;

    Advanced Centre for Research in High Energy Materials (ACRHEM),University of Hyderabad,Telangana,India;

    Department of Microbial Biochemical and Food Biotechnology,University of the Free State,Bloemfontein,ZA 9300,South Africa;

    Department of Physics,University of the Free State,Bloemfontein,South Africa;

    ENGAGE,University of Pretoria,Pretoria 0002,South Africa;

    Department of Physics,University of the Free State,Bloemfontein,South Africa;

    Department of Physics,University of the Free State,Bloemfontein,South Africa;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ion exchange; RBS; surface plasmon resonance; XPS; Z scan technique;

    机译:离子交换;RB;表面等离子体共振;XPS;Z扫描技术;

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