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电致发光色纯性增强的硅基有机微腔
引用本文:熊祖洪,史华忠,樊永良,张松涛,詹义强,何钧,钟高余,徐少辉,柳毅,王晓军,王子君,丁训民,黄维,侯晓远.电致发光色纯性增强的硅基有机微腔[J].物理学报,2003,52(5):1222-1229.
作者姓名:熊祖洪  史华忠  樊永良  张松涛  詹义强  何钧  钟高余  徐少辉  柳毅  王晓军  王子君  丁训民  黄维  侯晓远
作者单位:(1)复旦大学先进材料与技术研究院和高分子科学系,上海 200433; (2)复旦大学应用表面物理国家重点实验室,上海 200433; (3)复旦大学应用表面物理国家重点实验室和先进材料与技术研究院,上海 200433
基金项目:国家自然科学基金 (批准号 :699760 10 ),上海市科委重点科技项目 (批准号 :99JC14 0 0 7),上海市博士后基金资助的课题~~
摘    要:报道了硅基有机微腔的电致发光(EL).该微腔由上半透明金属膜、中心有源多层膜和多孔硅分布Bragg反射镜(PS DBR)组成.半透明金属膜由Ag(20nm)构成,充当发光器件的负电极和微腔的上反射镜.有源多层膜由Al (1 nm) / LiF(05 nm) /Alq3/Alq3:DCJTB/NPB/CuPc/ITO/SiO2组成,其中的Al/LiF为电子注入层,ITO为正电极,SiO2为使正、负电极电隔离的介质层.该PS DBR是采用设备简单、成本低廉且非常省时的电化学腐蚀法用单晶Si来制备的;该PS 关键词: 电化学腐蚀 电致发光 窄峰发射 硅基有机微腔

关 键 词:电化学腐蚀  电致发光  窄峰发射  硅基有机微腔
文章编号:1000-3290/2003/52(05)1222-08
收稿时间:2002-04-14
修稿时间:2002年4月14日

Enhanced chromaticity of organic electroluminescence from silicon-based organic microcavity
Xiong Zu-Hong,Shi Hua-Zhong,Fan Yong-Liang Zhang Song-Tao Zhan Yi-Qiang He Jun Zhong Gao-Yu Xu Shao-Hui Liu Yi Wang Xiao-Jun Wang Zi-Jun Ding Xun-Min.Enhanced chromaticity of organic electroluminescence from silicon-based organic microcavity[J].Acta Physica Sinica,2003,52(5):1222-1229.
Authors:Xiong Zu-Hong  Shi Hua-Zhong  Fan Yong-Liang Zhang Song-Tao Zhan Yi-Qiang He Jun Zhong Gao-Yu Xu Shao-Hui Liu Yi Wang Xiao-Jun Wang Zi-Jun Ding Xun-Min
Abstract:Electroluminescence (EL) from Si-based organic microcavity has firstly been reported in the literature. The microcavity is made up of the central active multilayers sandwiched between a silver film and a porous silicon Bragg reflector (PS-DBR), formed by electrochemical etching of p +-Si substrate in the electrolyte of HF: C 2H 5OH:H 2O. The central active multilayers consist of Al (1 nm) / LiF (0 5 nm) / Alq 3 / Alq 3: DCJTB / NPB / CuPc / ITO / SiO 2. The reflectivity (relative to an Al mirror) of the PS-DBR is up to 99%, and the stopband is about 160 nm wide. Resonant cavity mode appears as a tip in the reflectivity spectrum of the Si-based organic multilayer films, indicating that the Si-based organic multilayer structure is indeed a microcavity. The peak widths of the EL spetra are greatly reduced from 70 nm to 12 nm as compared with those measured from non-cavity structures. Note that the EL emission from the cavity devices is single-mode, and the off-resonant optical modes are highly suppressed. Moreover, an increase of a factor of about 4 of the resonant peak intensity is observed. In addition, the current-brightness-voltage characteristics and the effect of parameters on the lifetime of the cavity devices are also discussed. The present technique for obtaining enhanced EL emission from Si-based organic microcavity may also be another novel effective method for realizing all-Si-based photonic devices and optoelectronics device integration.
Keywords:electrochemical etching  electroluminescence  narrowed emission  Si-based organic microcavity
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