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Amorphous carbon-based films with surface-plasmon-enhanced full-color photoluminescence

机译:具有表面等离子体增强的全色光致发光的非晶碳基薄膜

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摘要

A series of amorphous carbon-based films were deposited on the nanostructured Ag layers to observe surface plasmon (SP) enhanced photoluminescence (PL). The dependence of PL peak wavelength and intensity on the film composition and the nanostructure of the Ag layers were systematically investigated. The PL wavelength was tuned from 442 nm to 635 nm by varying the carbon content of the as-deposited carbon-based films. The nanostructure of Ag layers varied from nanoparticles (NPs) to continuous films via process control. With the SPs generated at the carbon-based film/Ag layer interface, the PL intensity was found to be significantly enhanced with a peak enhancement factor of 6, and the light emission range of the composite films was extended to 434-653 nm. The dependence of PL intensity on the spectral overlap between the carbon-based films and plasmon resonant Ag layers, Ag surface morphology and the internal quantum efficiency (IQE) of the carbon-based films was discussed. The redshift of SP resonance with the increasing refractive index of the upper carbon-based films was observed.
机译:一系列非晶碳基薄膜沉积在纳米结构的Ag层上,以观察表面等离子体(SP)增强的光致发光(PL)。系统地研究了PL峰波长和强度对薄膜组成和Ag层纳米结构的依赖性。通过改变沉积的碳基薄膜的碳含量,PL波长从442 nm调整到635 nm。通过过程控制,Ag层的纳米结构从纳米颗粒(NPs)到连续膜不等。利用在碳基膜/ Ag层界面处产生的SP,发现PL强度显着增强,峰值增强因子为6,并且复合膜的发光范围扩展至434-653nm。讨论了PL强度对碳基薄膜与等离子共振Ag层之间光谱重叠,Ag表面形态和碳基薄膜内部量子效率(IQE)的依赖性。随着上层碳基薄膜的折射率增加,观察到SP共振的红移。

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