Fabrication of Single Crystalline Neodymium Oxide Nanowires under Mild Conditions
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概要
- 論文の詳細を見る
- 2004-05-05
著者
-
Murata Yusuke
Institute Of Advanced Energy Kyoto University
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Adachi Motonari
Institute Of Advanced Energy Kyoto University
関連論文
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- Characteristics of Solute Transfer in Sodium Dioleyl Phosphate/Sodium Bis(2-Ethylhexyl)Sulfosuccinate Microemulsion Systems
- BIOAFFINITY SEPARATION OF CONCANAVALIN A IN REVERSE MICELLAR SYSTEM COMPOSED OF AOT/BUTANOL OR NON-IONIC SURFACTANT
- Kinetic Analysis of the Noncompetitive Inhibition of the Lignin-Peroxidase-catalyzed Reaction by Oxalic Acid
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- Gold Nanowire Formation of 2-Dimensional Network Structure with Electric Conductivity
- Direct Chemical Synthesis of Gold Nanowires with 2-D Network Structure and Relationship between the Presence of Gold Ions and Shape Stability of Gold Nanowires
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- Control of Morphology and Reaction Activity of CeO_2-TiO_2 Composite Nanostructures by Changing the Mole Ratio of Cerium to Titanium Alkoxides
- Formation of Titania Nanotubes with High Photo-Catalytic Activity
- Fabrication of Single Crystalline Neodymium Oxide Nanowires under Mild Conditions
- Dissolution of gaseous methyl iodide into aqueous sodium hydroxide solutions.
- Effect of carbon dioxide upon partition equilibrium of iodine between air and aqueous sodium hydroxide solutions.
- Partition equilibrium of iodine in aqueous sodium hydroxide solutions containing boric acid.
- Equilibrium in the extraction of Cu(II) by benzoylacetone in benzene.
- Rates of reactions in Cu(II)-benzoylacetone system in aqueous phase.
- Position-scanning spectrophotometer as a means of observing multicomponent diffusion phenomena in liquid phase.
- REACTIONS OF METHYL IODIDE IN AQUEOUS SODIUM HYDROXIDE SOLUTIONS
- Kinetics of copper extraction by benzoylacetone.
- REACTIONS OF IODINE IN AQUEOUS SOLUTIONS CONTAINING SODIUM HYDROXIDE
- Effect of carbon dioxide on the absorption rate and mechanism of iodine vapor.
- Reaction rate of hydrolysis of iodine.
- Mechanism and Rate of Dilute Iodine Vapor Absorption by Aqueous Sodium Hydroxide Solution
- Liquid membrane operation with aid of microemulsion. Separation of metal ions.
- Rate of ferric chloride extraction with tri-n-octylamine.
- Some characteristics of liquid membrane with tri-n-octylamine.
- DEPENDENCY OF PARTITION EQUILIBRIUM OF IODINE BETWEEN AIR AND AQUEOUS SOLUTION CONTAINING SODIUM HYDROXIDE UPON TEMPERATURE AND CONCENTRATION