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分子束外延ZnSe/GaAs材料的拉曼散射研究 被引量:4
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作者 史向华 王兴军 +1 位作者 俞根才 侯晓远 《光学学报》 EI CAS CSCD 北大核心 2003年第5期619-621,共3页
用分子束外延 (MBE)技术 ,在GaAa( 10 0 )衬底上生长了厚度从 0 .0 45 μm到 1.4μm的ZnSe薄膜。通过室温拉曼光谱的测量对ZnSe薄膜纵光学声子 (Longitudinal opticalphonon)的谱形进行了分析。用拉曼散射的空间相关模型定量分析了一级... 用分子束外延 (MBE)技术 ,在GaAa( 10 0 )衬底上生长了厚度从 0 .0 45 μm到 1.4μm的ZnSe薄膜。通过室温拉曼光谱的测量对ZnSe薄膜纵光学声子 (Longitudinal opticalphonon)的谱形进行了分析。用拉曼散射的空间相关模型定量分析了一级拉曼散射的空间相关长度与晶体质量之间的关系 ,结果表明ZnSe外延层的晶体质量随着外延层厚度的减薄是渐渐退化的 ,这是由于界面失配位错引入外延层所致 ,理论分析与实验结果相吻合。 展开更多
关键词 分子束外延 光学材料 砷化镓 硒化锌 拉曼光谱 相干长度 薄膜生长 化合物半导体
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Electrodeposition mechanism of ZnSe thin film in aqueous solution
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作者 Jun-Li Xu Wei-Ying Gong +4 位作者 Wei Wang Hao Meng Xia Zhang Zhong-Ning Shi Geir-Martin Haarberg 《Rare Metals》 SCIE EI CAS CSCD 2017年第10期816-820,共5页
ZnSe is one of the important and excellent II-VI semiconductor materials, which has direct transition band structure. In this paper, ZnSe thin films were prepared by an electrochemical deposition method, and the forma... ZnSe is one of the important and excellent II-VI semiconductor materials, which has direct transition band structure. In this paper, ZnSe thin films were prepared by an electrochemical deposition method, and the formation mechanism of ZnSe was studied systematically. Voltammerry and chronoamperometry combined with X-ray diffraction (XRD) and Raman techniques were used to analyze the deposition processes. It is found that the substrate and deposition potentials have a great influence on the phase composition of deposited thin film, and Zn substrate is beneficial to the preparation ZnSe films. Strong selenium-substrate interaction results in the formation of selenimn compounds involving electrode materials. The addition of Zn(II) source can affect the reduction potential of Se, and results in the change of reducing mechanism of Se(0) from Se(IV). Se(0) formed from H2Se because the formation of H2Se is more active than forming Se(0) directly from Se(IV), and H2Se can recombine with the substrate material, forming selenium-substrate compounds more quickly. 展开更多
关键词 znse Thin film Electrodepostion MECHANISM raman spectra
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