From Hydrothermal Reactions and Techniques: The Proceedings of the Seventh International Symposium on Hydrothermal Reactions

Chapter List

Synthesis and Particle Morphology Control of BaTiO3 and TiO2 by Hydrothermal Soft Chemical Process
Hydrothermal Growth and Luminescence of Indium Doped Calcite Crystals
Hydrothermal Synthesis of Bi4Si3O12 and Bi4Ge3O12 Crystals
Heat Field Rotation Method as a New Approach for Hydrothermal Crystal Growth
The Synthesis of CaTiO3 Film on Titanium Substrate by Electrochemical Hydrothermal Method
Hydrothermal and Hydrothermal-Electrochemical Growth of Complex Oxide Thin Films Relevant to Microelectronics
Colloids, Helices, and Films of MB/HB-MNOX Biocomposites
Hydrothermal Synthesis of Mono-Dispersed Superfine Quartz Powders and the Effect on its Morphology
Hydrothermal Synthesis of Titanate Nanowires
Hydrothermal Formation of Dispersive Mg(OH)2 Particles in NaOH Solution
Rare Earth Doped Nanocrystalline Titanium Dioxide: Preparation, Phase Transformation and Photocatalytic Properties
Direct Synthesis of Self-Assembled InP and GaP Nanocrystals
Ordered Bismuth Nanohole Arrays Made by a One-Step Replication of Anodic Aluminum Oxide Via a Solvothermal Method
Hydrothermal Synthesis of Lithium Vanadium Oxide Nanorods as Cathode Materials for Rechargeable Lithium Batteries

Department of Advanced Materials Science, Faculty of Engineering, Kagawa University, 2217-20
Hayashi-cho, Takamatsu-shi, 761-0396 Japan.

Research Laboratory of Hydrothermal Chemistry, Faculty of Science, Kochi University,
Akebono-cho, Kochi-shi, 780-8520 Japan

BaTiO 3 particles with book-like, spherical and silkworm-like morphology were prepared by using a hydrothermal soft chemical process in the presence of a cationic surfactant. Two types of layered titanates of H 1.07Ti 1.73O 4 with a plate-like particle morphology and H 2Ti 4O 9 with fibrous morphology were used...

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Sapphire Materials and Components
Sapphire materials and sapphire components consist of a single-crystal or monocrystalline form of aluminum oxide (Al2O3). As ceramic materials, they have superior hardness, mechanical and optical properties. Applications include jewel bearings, lasing rods, wear parts, wafer substrates and optics.
Inorganic Chemicals and Compounds
Inorganic chemicals, inorganic salts and inorganic compounds are substances of mineral origin that do not contain carbon in their molecular structure.
Master Alloys and Alloying Additives
Master alloys and alloying additives are alloy element concentrates, grain refiners, hardeners, deoxidants and other agents added into a melt or metal powder blend to produce a particular alloy, modify a melt or alter processing characteristics.
Inhibitors and Stabilizers
Inhibitors suppress, decrease, or prevent a reaction from occurring while stabilizers are used to maintain specific functions or properties of a product or additive.
Dielectric Ceramics and Substrates
Dielectric ceramics and substrates are electrical insulators with dielectric strength, dielectric constant and loss tangent values tailored for specific device applications.

Topics of Interest

Chapter List Hydrothermal Syntheses and Structural Diversity of a Family of Inorganic-Organic Hybrid Vanadium Selenites Towards Understanding of the Formation of Open-Framework Solids: The...

Chapter List Direct Hydrothermal Synthesis of Multi-Component Oxides by High Temperature Mixing Method Studies on the Transformation from an Intermediate Aluminophosphate Phase to Three-Dimensional...

Bonnie L. Gersten ARL, ATTN: AMSRL-WM-MD, Building 4600, APG, MD 21005 5069 9.1 Introduction In this chapter a general description of the hydrothermal process and ferroelectric materials will be...

Chapter List Characterization of High Pressure and Temperature Dry Steam and its Applications Direct Fabrication of Patterned Ceramic Films by Soft Solution Processing Without Post-Firing...

Malgorzata M. Lencka [1] and Richard E. Riman [2] 8.1 Introduction In this chapter, we will focus on the hydrothermal synthesis of smart ceramic materials with a perovskite-type structure. Perovskite...