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Department of Materials Science and Engineering, Kyoto University | 論文
- Atomic and Electronic Structures of Hydrated Polymolybdates by First Principles Calculations
- The study of AI-L_23 ELNES with resolution-enhancement software and first-principles calculation
- Electronic Structures and Chemical Bonding of TiX_2 (X=S, Se, and Te)
- Electronic Structure and Chemical Bonding of TiS_2 by Cluster Calculation
- Numerical Simulation of C/C/C Planar X-ray Waveguides
- Self-assembled Multilayer Formed by Alternate Stacking of Zirconium and Terephthalic Acid Layers
- Organic Monolayers Covalently Bonded to Si as Ultra Thin Photoresist Films in Vacuum UV Lithography
- A New Water-soluble p-Boronophenylalanine Derivative for Neutron Capture Therapy
- Surface Chemical Conversion of Organosilane Self-Assembled Monolayers with Active Oxygen Species Generated by Vacuum Ultraviolet Irradiation of Atmospheric Oxygen Molecules
- Optical Properties of (InAs)_1/(GaAs)_m Strained-Layer Superlattices
- Interference Effects on Photoreflectance Line Shapes of Excitons in GaAs/AlAs Superlattices
- Photoluminescence Properties of GaAs / AlAs Short-Period Superlattices
- Strong X-Ray Emission from Electrified Insulators
- Electronic Mechanism of Ag-Cluster Formation in AgBr and AgI
- Electronic States and Chemical Bondings of an Interstitial Cation in Ionic Compounds AgCl and NaCl
- Electronic States of F-Centers in Alkali Halide Crystals
- Relativistic Change in Bond overlap population for the Study of Relativistic Effects on Bond Length of Diatomic Molecules
- Note on the Contribution of Relativity to Cu_2 Bonding
- Inactivation of Rho GTPases by p190 RhoGAP reduces human pancreatic cancer cell invasion and metastasis
- Organosilane self-assembled multilayer formation based on activation of methyl-terminated surface with reactive oxygen species generated by vacuum ultra-violet excitation of atmospheric oxygen molecules