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National Institute For Material Science | 論文
- Optimization of Annealing Time and Cu Concentration for Study of Luminescence Properties of Cu-Implanted ZnO Thin Films
- Influence of iron chelation with organic ligands on the growth of red tide phytoplankton
- The Synergistic Extraction of Lanthanides with Trifluoroacetylcycloalkanones and Trioctylphosphine Oxide
- High-Resolution Solid-State NMR Studies of Natural Abundant ^N Observed in Halogen-Bridged One-Dimensional Complexes, [NiX(chxn)_2]X_2 and [Pd(chxn)_2][PdX_2(chxn)_2]Y_4 (chxn = (1R,2R)-Diaminocyclohexane ; Y = X (Halogen), NO_3, and ClO_4)
- ^Co NMR Study of R_3Co Compounds (R=Y,Gd,Tb,Dy)
- Ionic Model of Some Aspects of Cu NQR Spectra in Superconducting Oxides
- Yellow Emission from Zinc Oxide giving an Electron Spin Resonance Signal at g=1.96
- Synthesis of ZnO Bicrystals Doped with Co or Mn and Their Electrical Properties
- Microstructure Evolutions at Severely-deformed Austenite/Martensite Interfaces of a Layer-integrated Steel
- Structure and Superconducting Properties of Y-Pd-B-C System
- 21aXQ-7 Effect of Pinning and Driving Force on the Phase Transformations in the Weakly Pinned Vortex Matter in Conventional Superconductors
- Fabrication of the Iron-Based Superconducting Wire Using Fe(Se,Te)
- Mating Suppression of Spodoptera litura F.(Lepidoptera : Noctuidae) in Green-houses by a Component of Its Sex Pheromone
- Influence of Internal Electric Field on the Recombination Dynamics of Localized Excitons in an InGaN Double-Quantum-Well Laser Diode Wafer Operated at 450nm
- Ultra-high Magnetic Field (21.8T) Solid-state Nuclear Magnetic Resonance for Inorganic Materials
- Improving the Type IV Cracking Resistance of 9Cr Ferritic Steels by Boron Addition : Creep Properties and Microstructures of High-B 9Cr Heat Resistant Steel Weldments-1
- Effect of Post Weld Heat Treatment on Type IV Cracking of a High Cr Ferritic Steel
- Nitrogen Ion Behavior on Polar Surfaces of ZnO Single Crystals
- Diffusion Mechanism of Oxide Ions in Mn-Zn -ferrites
- Electronic Structure of Superconducting FeSe Studied by High-Resolution Photoemission Spectroscopy(Condensed matter: electronic structure and electrical, magnetic, and optical properties)
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