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Division of Materials and Manufacturing Science, Graduate School of Engineering, Osaka University | 論文
- Peculiar Wetting of Liquid Cu on the Surface of Oxidized Solid Fe
- Simple removal of dioxins by injecting combustion gas into water
- Synthesis of Hydroxyapatite-Zeolite Composite Material from Disposed Steel Slag and Investigation of Its Structural and Physicochemical Characteristics
- Design of Nano-Sized Pt Metals Synthesized on Ti-Containing Mesoporous Silicas and Efficient Catalytic Application for NO Reduction
- Texture Control in Hydroxyapatite by Hot Forging
- Effect of β-TCP Size on Bone-Like Layer Growth and Adhesion of Osteoblast-Like Cells in Hydroxyapatite/β-TCP Composites
- Bone-like Layer Growth and Adhesion of Osteoblast-like Cells on Calcium-deficient Hydroxyapatite Synthesized at Different pH
- Preparation of Zr-Based Metallic Glass Wires for Biomaterials by Arc-Melting Type Melt-Extraction Method
- Preparation of Superhydrophilic Mesoporous Silica Thin Films Containing Single-site Photocatalyst (Ti, V, Cr, Mo, and W oxide moieties)
- A Multifunctional Heterogeneous Catalyst : Titanium-containing Mesoporous Silica Material Encapsulating Magnetic Iron Oxide Nanoparticles
- Applications of Single-site Photocatalysts Implanted within the Silica Matrixes of Zeolite and Mesoporous Silica
- Unusual Wetting of Liquid Metals on Iron Substrate with Oxidized Surface in Reduced Atmosphere
- Oxygen Adsorption Behavior on the Surface of Liquid Cu-Ag Alloys
- Effect of Oxygen on Surface Tension of Liquid Ag-Sn Alloys
- Two-Dimensional Quantitative Analysis of Preferential Alignment of BAp c-axis for Isolated Human Trabecular Bone Using Microbeam X-ray Diffractometer with a Transmission Optical System
- Evaluation of Bone Quality near Metallic Implants with and without Lotus-Type Pores for Optimal Biomaterial Design
- Direct Bonding to Aluminum with Silver-Oxide Microparticles
- Bonding Technique Using Micro-Scaled Silver-Oxide Particles for In-Situ Formation of Silver Nanoparticles
- Nitrogen Removal from Molten Iron to Gas Phase through CaO-Al_2O_3-CaF_2 Melt
- Coating of Transparent Ti-containing Mesoporous Silica Thin Films on Quartz and Aluminum Alloy Substrates for Fabrication of Highly Hydrophilic Surfaces