Electroless deposition on copper substrates and characterization of thin films of copper (I) selenide
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[1] K. Santhanam,et al. Laser interf erometry of electroless deposition of copper selenide , 1989 .
[2] K. Holub,et al. Voltammetry of metal complex systems with different diffusion coefficients of the species involved. IV. Simulation of the limiting current for any metal-to-ligand ratio and elaboration to voltammetric curves. , 1989 .
[3] S. Kashida,et al. X-ray diffraction and electron microscopy studies of the room-temperature structure of Cu2Se , 1988 .
[4] G. K. Padam. The properties of chemically deposited Cu2−xSe thin films , 1987 .
[5] B. Ruscic,et al. Superstructural ordering in low-temperature phase of superionic Cu2Se , 1987 .
[6] S. Lin,et al. Large Grain Copper Indium Diselenide Films , 1984 .
[7] O. Cavin,et al. Hydrothermal growth of single crystal Cu2Se (Berzelianite) , 1984 .
[8] Z. Ogorelec,et al. Composition-induced phase-transition splitting in cuprous selenide , 1981 .
[9] A. Tonejc. Phase diagram and some properties of Cu2−xSe(2.01≥2−x≥1.75) , 1980 .
[10] T. Matsumae,et al. Electrical properties of Cu2−xSe thin films and their application for solar cells , 1980 .
[11] B. Miller,et al. Studies in Selenious Acid Reduction and CdSe Film Deposition , 1980 .
[12] R. D. Heyding,et al. The Copper–Selenium System at Temperatures to 850 K and Pressures To 50 Kbar , 1975 .
[13] S. G. Ellis. Flash Evaporation and Thin Films of Cuprous Sulfide, Selenide, and Telluride , 1967 .
[14] J. Loferski,et al. Theoretical Considerations Governing the Choice of the Optimum Semiconductor for Photovoltaic Solar Energy Conversion , 1956 .
[15] W. Borchert. Gitterumwandlungen im SystemCu2−xSe1) , 1945 .