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Showing items 51-100 of 158  (4 Page(s) Totally)
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Institution Date Title Author
國立中山大學 1999 Preparation of BaTiO3 Thin Films by Metal Organic Chemical Vapor Deposition M.K. Lee;H.C. Fan;R.H. Horng;D.S. Wu;J. Gong
國立中山大學 1999 Preparation of TiO2 and BaTiO3 Thin Films by Metal Organic Chemical Vapor Deposition M.K. Lee;H.C. Lee;M.C. Fan;I.M. Horng
國立中山大學 1999 Characteristics of Oxynitride Prepared by Liquid Phase Deposition M.K. Lee;H.C. Lee;M.C. Fan;I.M. Horng
國立中山大學 1998-12 Study of Mg Incorporation of ZnMgSSe by OMVPE M.K. Lee;Y.R. Chang;S.S. Pan
國立中山大學 1998-06 Mechanism of Porous Silicon Formation M.K. Lee; C.H. Chu; Y.C. Tseng
國立中山大學 1998 High Quality InP Epitaxial Growth Using Flow Rate Modulation Metalorganic Chemical Vapor Deposition M.K. Lee; C.C. Hu
國立中山大學 1998 The Protrusion of Liquid Phase Oxide Deposition on Patterned Silicon Wafer with Silicon Nitride as Mask M.K. Lee; C.N. Yang; C.H. Lin; B.H. Lei
國立中山大學 1998 Improvement of Effective Charges in Oxynitride Prepared by Liquid Phase Deposition on Silicon M.K. Lee; C.H. Lin; B.H. Lei; C.D. Yang
國立中山大學 1998 Thermal Stability of Co-Spttered Ru-ti Ally Electrodes for Dynamic Random Access Memory Application R.H. Horng;D.S. Wuu;L.H. Wu;M.K. Lee;S.H. Chan;C.C. Leu
國立中山大學 1998 A High Gain Porous Silicon MetalSemocoductor-Metal Photodetector Throgh Rapid Thermal Oxidation and Rapid Thermal Annealing M.K. Lee;Y.C. Tseng; C.H. Chu
國立中山大學 1998 The Improvement of Liquid Phase Deposition of Silicon Dioxide with Hydrochloric Acid Incorporation M.K. Lee; C.H. Lin; C.N. Yang; C.D. Yang
國立中山大學 1998 High Gain Porous Metal-Semiconductor-Metal Photodetector M.K. Lee;C.H. Chu;Y.H. Wang
國立中山大學 1998 High Sensitivity Porous Silicon Photodetectors Fabricated Through Rapid Thermal Oxidation and Rapid Thermal Annealing M.K. Lee;C.H. Chu;Y.H. Wang
國立中山大學 1998 Photoluminescence Charactrization of Nitridation Process of GzN/Sapphire M.K. Lee;J.M. Shyr;W.C. Chao;C.D. Yang
國立中山大學 1997 Flatness Improvement of GaAs Observed by Atomic Force Microscope Using Flow Rate Modulation Epitaxy M.K. Lee; C.C. Hu
國立中山大學 1997 Deposition of Copper films on silicon fro cupric sulfate and hydrofluoric acid M.K. Lee; J.J. Wang; H.D. Wang
國立中山大學 1997 High Sensitivity Porous Silicon Photodetectors Fabricated Through Rapid Thermal Oxidation and Rapid Thermal Annealing M.K. Lee; Y.H. Wang; C.H. Chu
國立中山大學 1997 Flatness Improvement of InP Using Phosphine Modulation Metalorganic Chemical Vapor Deposition M.K. Lee; C.C. Hu
國立中山大學 1997 A Cu Seed Layer for Cu Deposition M.K. Lee; H.D. Wang; J.J. Wang
國立中山大學 1997 Oxynitride Prepared by Liquid Phase Deposition M.K. Lee; B.H. Lei; C.H. Lin
國立中山大學 1997 High Quality III-V Epitaxial Growth Using Flow Rate Modulation Metalorganic Chemical Vapor Deposition M.K. Lee;C.C. Hu
國立中山大學 1997 Low Temperature Growth of Nitrogen-Doped ZnSxSe1-x by Low Pressure OMCVD M.K. Lee;H.F. Huang;Y.R. Chang
國立中山大學 1997 The Protrusion of Liquid Phase Oxide Deposition on Patterned Silicon Wafer with Silicon Nitride as Mask M.K. Lee;C.N. Yang;C.H. Lin;B.H. Lei;C.D. Yang
國立中山大學 1997 ZnSxSe1-x Heterojunction Grown on GaP by Metalorganic Vapor Phase Epetaxy M.K. Lee;C.W. Hong;S.J. Wei;Y.R. Chang
國立中山大學 1997 The Improvement of Liquid Phase Deposition of Silicon Dioxide with Hydrochloric Acid Incorporation M.K. Lee;C.N. Yang;C.H. Lin;C.D. Yang
國立中山大學 1996 The Fabrication of InGaP/Si Light Emitting Diode by Metalorganic Chemical Vapor Deposition C.C. Hu; C.S. Sheu; M.K. Lee
國立中山大學 1996 The Electrical and Optical Characteristics of GaAs on Si by Modified Flow Rate Modulation Epitaxy M.K. Lee; C.C. Hu; C.Z. Hwang
國立中山大學 1996 Utilization of GaAs Masking Layer for Formation of Patterned Porous Silicon M.K. Lee; C.C. Hu; Y.H. Wang
國立中山大學 1996 Silicon Doping of InP using Modified Flow Rate Modulation Epitaxy C.C. Hu; M.H. Lin; M.K. Lee
國立中山大學 1996 Improvement of Porous Silicon Photo-detector Characteristics M.K. Lee;Y.H. Wang;C.H. Chu
國立中山大學 1995-11 ZnSe Blue LED with Nitrogen-doped ZnSe Grown in A Se-rich Condition by Low-Pressure OMCVD M.Y. Yeh;M.K. Lee
國立中山大學 1995 Blue Light Emitting Diode M.K. Lee; M.Y. Yeh; H.D. Huang; C.W. Hong
國立中山大學 1994 Characterization of Al-doped n-type ZnSe prepared under a zinc-rich growth condition by low pressure organometalic chemical vapor deposition M.Y. Yeh; S.J. Guo; H.D. Huang; M.K. Lee
國立中山大學 1994 Heterojunction ZnSe/InP field-effect transistor by metalorganic chemical vapor deposition M.K. Lee; H.C. Liao; C.C. Hu; M.Y. Yeh
國立中山大學 1994 Nitrogen-doped ZnSe with selenium-rich growth by low-pressure organometallic chemical vapor deposition M.K. Lee; M.Y. Yeh; H.D. Huang
國立中山大學 1994 用MOCVD法成長光電材料 M.K. Lee
國立中山大學 1994 The formation mechanism of porous silicon M.K. Lee;C.H. Chu;Y.C. Tseng
國立中山大學 1994 ZnSe Blue LED M.K. Lee;M.Y. Yeh;H.D. Huang;C.W. Horng
國立中山大學 1993 p+/n/n+ InP solar cells directly on Si substrates M.K. Lee; D.S. Wuu; R.H. Horug
國立中山大學 1993 Metal-organic chemical vapor deposition growth of InP using phosphine modulation M.K. Lee; C.C. Hu; M.H. Lin
國立中山大學 1993 Blue emission of porous silicon M.K. Lee; K.R. Peng
國立中山大學 1993 Aluminum Doped N-type ZnSe by Low Pressure Organometallic Chemical Vapor Deposition M.K. Lee;M.Y. Yeh;S.I. Guo;H.D. Huang
國立中山大學 1993 Direct Bonding of GaAs arid Silicon M.K. Lee;M.Y. Yeh;S.J. Guo;H.D. Huang
國立中山大學 1993 ZnSSe/GaAs growth by flow-rate modulation epitaxy M.K. Lee;M.Y. Yeh;S.J. Guo;H.D. Huang
國立中山大學 1993 Metal organic chemical vapor deposition of DIP using phosphorous modulation M.K. Lee;C.C. Hu;M.H. Fin
國立中山大學 1993 Flow-rate modulation of GaAs on silicon using MOCVD M.K. Lee;C.C. Hu;C.Z. Hwang
國立中山大學 1993 Porous silicon photodetector M.K. Lee;K.R. Peng;J. Ju
國立中山大學 1992-10 High Performance disorder/order/disorder Ga(0.5)In(0.5)P visible LEDs M.K. Lee;R.H. Horng;L.C. Haung
國立中山大學 1992 Thermal- and impurity-induced order-disorder transformations of Ga(0.5)1n(0.5)P epilayers grown by metalorganic chemical vapor deposition R.H. Horng; L.C. Haung; M.K. Lee
國立中山大學 1992 Ordering effect on the performance of Ga(0.5)In(0.5)P visible light-emitting diodes grown by metalorganic chemical vapor deposition R.H. Hong; M.K. Lee

Showing items 51-100 of 158  (4 Page(s) Totally)
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