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CdSe_xTe_(1-x)薄膜的制备及其XPS表征 被引量:2

Synthesis and XPS Study of CdSe_xTe_(1-x) Films
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摘要 本文采用真空蒸发法在CdTe粉末中按不同比例掺入CdSe粉末,选择合适的工艺条件,在玻璃衬底上制备了性能稳定的CdSex Te1-x三元化合物薄膜。利用XRD、紫外-可见分光光度计、XPS对薄膜的结构、光学性能、组成成分等进行了表征。XRD测试结果表明,薄膜均为立方闪锌矿结构的CdSex Te1-x三元化合物,并沿(111)晶面择优生长,晶格常数随x值增大而减小;透射光谱表明薄膜的吸收限随x值增大先向长波方向移动,x=0.64时达到最大值,然后向短波方向移动;XPS分析表明,薄膜的主要成分为CdSex Te1-x三元化合物,随着x值增大,Se、Te、Cd三种元素的特征峰均向高结合能方向偏移。 CdSexTe1-x ternary thin films with different chemical composition were prepared on glass substrates by vacuum evaporation of CdTe and CdSe powders.Crystal structural,optical properties,chemical composition of the CdSexTe1-x thin films were characterized by X-ray diffraction(XRD)technique,UV-visible spectrophotometer and X-ray photoelectron spectroscopy(XPS).XRD analysis revealed that the CdSexTe1-x thin films belong to zinc blende structure and show(111)preferred orientation.The lattice constant of the thin films decreases steadily with increasing x.Optical transmission spectrum shows that absorption edges of CdSexTe1-x films are shifted to longer wave first and then shifted to shorter wave with the increase of Se concentration,passing through the maximum at x=0.64and.XPS results indicated that the major component of the films is the CdSexTe1-x compound.Characteristic peaks of Se,Te and Cd are all moved to higher energy side with the increase of x.
出处 《材料科学与工程学报》 CAS CSCD 北大核心 2014年第1期47-51,共5页 Journal of Materials Science and Engineering
基金 内蒙古教育厅资助项目(NJ09006)
关键词 真空蒸发 CdSexTe1-x薄膜 XRD XPS表征 vacuum evaporation CdSexTe1-x films XRD XPS
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  • 1覃文治,郑家贵,蔡伟,冯良桓,蔡亚平,张静全,李卫,黎兵,武莉莉,李阳华,岳磊,郑华靖.Br_2-甲醇蚀刻对CdTe太阳电池性能的影响[J].材料科学与工程学报,2005,23(2):256-258. 被引量:4
  • 2罗政纯,朱世富,赵北君,王瑞林,陈松林,何知宇,李艺星,任锐.湿氧钝化CdSe(110)表面的XPS分析[J].人工晶体学报,2004,33(2):164-167. 被引量:2
  • 3李国栋,黄文德,张玉仙.薄膜的相结构和成分分析[J]内蒙古大学学报(自然科学版),1988(02).
  • 4K.Sivaramamoorthy,S.Asath Bahadur,M.Kottaisamy,K. R.Murali.Structural, optical and photoconductive properties of electron beam evaporated CdS<sub>x</sub>Se<sub>1‐x</sub> films[J]. Cryst. Res. Technol. . 2010 (4)
  • 5L. Hannachi,N. Bouarissa.Electronic structure and optical properties of CdSe x Te 1? x mixed crystals[J]. Superlattices and Microstructures . 2008 (6)
  • 6Thorsten Homann,Urte Hotje,Michael Binnewies,Alexander B?rger,Klaus-Dieter Becker,Thomas Bredow.Composition-dependent band gap in ZnS x Se 1? x : a combined experimental and theoretical study[J]. Solid State Sciences . 2005 (1)
  • 7K. R. Murali.Structural, optical and photoelectrochemical properties of brush plated CdSe x Te1 ? x thin films[J]. Journal of Materials Science . 2003 (18)
  • 8P.D More,G.S Shahane,L.P Deshmukh,P.N Bhosale.Spectro-structural characterisation of CdSe 1? x Te x alloyed thin films[J]. Materials Chemistry and Physics . 2002 (1)
  • 9R. Islam,H.D. Banerjee,D.R. Rao.Structural and optical properties of CdSe x Te 1 ? x thin films grown by electron beam evaporation[J]. Thin Solid Films . 1995 (2)

二级参考文献21

  • 1刘朝旺,宋炳文.用XPS对CdTe(111)面进行化学特性分析[J].红外技术,1994,16(5):6-10. 被引量:4
  • 2刘恩科 朱秉升 罗晋生.半导体物理学[M].北京:国防工业出版社,1994..
  • 3PowellR C, Sasala R A, Dover G, et al. Development of thin-film CdTe phovoltaics [C]. Technical Digest of International PVSEC-9,Miyazaki, Japan, 1996:117 ~ 120.
  • 4Aramoto T, Ku mazawa S, Higuchi H, et al. 16.0% efficient thin film CdS/CdTe solar cells [J]. J. Appl. Phys., 1997,36 (10):6304 ~ 6305.
  • 5Vllal H S, Zweibel K, Von Roedern B. Current status of polycrystalline thin-film PV technologies[C]. In: IEEE, conf. Rec.26th IEEE PVSC, Proc. 1997 26th IEEE PVSC, Anaheim, CA,USA, 1997, New York, USA, IEEE: 1997:301 ~305.
  • 6K. Durose, M. Burgelman. [J]. J. Appl. Phys. 1993,73:8381.
  • 7J.P. Ⅱaring, J. G. Werthen, R. Bube, et al.[J]. J.Vac. Sci.Tech., Al, 1983,1469.
  • 8Sarlund J, Ritala M, Leskela M, et al. Characterization of Etching Proparation of CdTe solar cells[J]. Solar Energy Materials and Solar Cells, 1966, 44:177 ~ 190.
  • 9D.W. Nikles, X.Li, P. Sheldon, et al. [J]. J. Appl. Phys.77(1995) 4489.
  • 10Picos-Vega A, Becerricl M, Zelaya-Angelo. [J]. J. Appl. Phys.,1998,83:760 ~ 763.

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