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Surface Plasmon Enhanced Photoluminescence of Rhodamine 6G on Au Nanoparticles 2D Array: Temperature Effects

机译:罗丹明6G在Au纳米粒子二维阵列上的表面等离子体增强的光致发光:温度效应

摘要

Influence of temperature on the photoluminescence of rhodamine 6G deposited on 2D array of the gold nanoparticles was studied in the temperature range 78–278 K. The factor of surface plasmonic enhancement of rhodamine luminescence was found to decrease monotonically with increasing temperature. Electron-phonon scattering and thermal expansion of the gold nanoparticles were considered as two competing physical mechanisms of the temperature dependence of plasmonic enhancement factor. The calculations showed the significant prevalence of the electron-phonon scattering that causes the temperature induced decrease of plasmonic enhancement of rhodamine 6G luminescence observed.
机译:研究了温度对78-278 K温度范围内金纳米颗粒二维阵列上若丹明6G光致发光的影响。发现随着温度的升高,若丹明发光的表面等离子体增强因子单调降低。电子-声子散射和金纳米粒子的热膨胀被认为是等离子体增强因子对温度的依赖性的两个相互竞争的物理机制。计算表明电子声子散射的普遍性,导致温度引起的若丹明6G发光的等离子体增强的下降。

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