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非晶SiC_xO_y薄膜的可调强光发射机制
引用本文:王怀佩,林圳旭,宋捷,张文星,王岩,郭艳青,李洪亮,宋超,黄锐.非晶SiC_xO_y薄膜的可调强光发射机制[J].发光学报,2017,38(9).
作者姓名:王怀佩  林圳旭  宋捷  张文星  王岩  郭艳青  李洪亮  宋超  黄锐
作者单位:1. 太原理工大学 物理与光电工程学院, 山西 太原 030006;韩山师范学院 材料科学与工程学院, 广东 潮州 521041;2. 韩山师范学院 材料科学与工程学院,广东 潮州,521041;3. 太原理工大学 物理与光电工程学院,山西 太原,030006
基金项目:国家自然科学基金,广东省自然科学基金,广东高校优秀青年创新人才培养计划项目,广东省普通高校青年创新人才项目(自然科学)2016资助项目Supported by National Natural Science Foundation of China,Natural Science Foundation of Guangdong Province,Distinguished Young Teacher Training Program in Higher Education of Guangdong,2016 Young Talents in Higher Education of Guangdong
摘    要:采用甚高频等离子体增强化学气相沉积技术,以SiH_4、CH_4和O_2作为反应气源,通过调控O2流量在250℃下制备强光发射的非晶SiC_xO_y薄膜。利用光致发光光谱、荧光瞬态谱、Raman光谱、X射线光电子能谱及红外吸收谱对薄膜的光学性质和微结构进行表征与分析,进而讨论其可调可见光发射机制。实验结果表明,SiC_xO_y薄膜发光性质与薄膜中的氧组分密切相关。随着薄膜中氧组分的增加,其发光峰位由橙红光逐渐向蓝光移动,肉眼可见强的可见光发射。荧光瞬态谱分析表明,薄膜的荧光寿命在纳秒范围。结合X射线光电子能谱和红外吸收谱对薄膜的相结构和化学键合结构进行分析,结果表明薄膜的主要相结构和发光中心随O_2流量的变化是其可调光发射的主要原因。

关 键 词:光致发光  碳氧化硅  等离子增强化学气相沉积  发光机制

Strong Tunable Light Emission from Amorphous Silicon Oxycarbide Film
WANG Huai-pei,LIN Zhen-xu,SONG Jie,ZHANG Wen-xing,WANG Yan,GUO Yan-qing,LI Hong-liang,SONG Chao,HUANG Rui.Strong Tunable Light Emission from Amorphous Silicon Oxycarbide Film[J].Chinese Journal of Luminescence,2017,38(9).
Authors:WANG Huai-pei  LIN Zhen-xu  SONG Jie  ZHANG Wen-xing  WANG Yan  GUO Yan-qing  LI Hong-liang  SONG Chao  HUANG Rui
Abstract:The strong luminescent amorphous silicon oxycarbide (a-SiCxOy) films with different O content were prepared by very high frequency plasma enhanced chemical vapor deposition (VHF-PECVD) at 250 ℃ by using the gas mixture of SiH4, CH4 and O2 as the precursor.The effect of O content on the luminescent properties and structure of SiCxOy thin films was investigated.It is found that the increase of O content results in remarkable photoluminescence (PL) with orange-red to blue shifting emission, which can be clearly observed with the naked eyes in a bright room.The PL of the a-SiCxOy film is suggested from the nanoseconds recombination lifetime.The microstructure and the chemical compositions of the films were further investigated by Raman spectra, X-ray photoelectron spectroscopy (XPS) and Fourier transform infrared absorption (FTIR) spectroscopy, respectively.Combining with the PL results and the analysis of the chemical bonds and microstructure present in the films, the main phase structure of the films and the change of the luminescent center with the O2 flow rate are the main reasons for the tunable light emission.
Keywords:photoluminescence  silicon oxycarbide  plasma enhance chemical vapor deposition  photoluminescence mechanism
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