Tag Archives: titanate.

“Advances in Crystallization Processes” ed. by Yitzhak Mastai

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"Advances in Crystallization Processes" ed. by Yitzhak Mastai
InTeOpP | 2012 | ISBN: 9535105817 9789535105817 | 659 pages | PDF | 51 MB
This book provides the latest research developments in many aspects of crystallization including: chiral crystallization, crystallization of nanomaterials and the crystallization of amorphous and glassy materials. This book is of interest to both fundamental research and also to practicing scientists and will prove invaluable to all chemical engineers and industrial chemists in the process industries as well as crystallization workers and students in industry and academia.

“Advances in Crystallization Processes” ed. by Yitzhak Mastai
Crystallization is used at some stage in nearly all process industries as a method of production, purification or recovery of solid materials. In recent years, a number of new applications have also come to rely on crystallization processes such as the crystallization of nano and amorphous materials.

Contents
Section 1 Chiral crystallization
1 Separation of the Mixtures of Chiral Compounds by Crystallization
2 Crystallization on Self Assembled Monolayers
3 Asymmetric Reaction Using Molecular Chirality Controlled by Spontaneous Crystallization
Section 2 Crystallization of amorphous and glassy materials
4 Preparation of Na+ Superionic Conductors by Crystallization of Glass
5 Crystallization Kinetics of Metallic Glasses
6 Crystallization Kinetics of Amorphous Materials
7 Thermodynamics of Enthalpy Relaxation and Hole Formation of Polymer Glasses
8 Crystallization Behavior and Control of Amorphous Alloys
Section 3 Crystallization of nanomaterials
9 Influence of Crystallization on the Properties of Sn02 Thin Films
10 Crystallization of Sub-Micrometer Sized ZSM-5 Zeolites in SDA-Free Systems
11 The Growth of Chalcedony (Nanocrystalline Silica) in Electric Organs from Living Marine Fish
12 Synthesis and Characterization of Crystalline Zirconium Titanate Obtained by Sol-Gel
13 Characterization of Sol-Gel-Derived and Crystallized ??2, Zr02, Zr02-Y203 Thin Films on Si(001) Wafers with High Dielectric Constant
14 Crystalization in Spinel Ferrite Nanoparticles
Section 4 Bulk Crystallization from Aqueous Solutions
15 Separation of Uranyl Nitrate Hexahydrate Crystal from Dissolver Solution of Irradiated Fast Neutron Reactor Fuel
16 Stable and Metastable Phase Equilibria in the Salt-Water Systems
17 'Salt Weathering' Distress on Concrete by Sulfates?
18 Crystallization, Alternation and Recrystallization of Sulphates
Section 5 General issues in crystallization
19 Synthetic Methods for Perovskite Materials – Structure and Morphology
20 Phase Behavior and Crystal Structure of Binary Polycyclic Aromatic Compound Mixtures
21 Structure of Pure Aluminum After Endogenous and Exogenous Inoculation
22 Phosphoramidates: Molecular Packing and Hydrogen Bond Strength in Compounds Having a P(0)(N)n(0)3-n (n = 1, 2, 3) Skeleton
23 Synthesis and X-Ray Crystal Structure of a-Keggin-Type Aluminum-Substituted Polyoxotungstate
24 The Diffusion Model of Grown-ln Microdefects Formation During Crystallization of Dislocation-Free Silicon Single Crystals
25 Preparation of Carvedilol Spherical Crystals Having Solid Dispersion Structure by the Emulsion Solvent Diffusion Method and Evaluation of Its in vitro Characteristics
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Advances in Ceramic Materials (Materials Science Forum, volume 606)

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Advances in Ceramic Materials (Materials Science Forum, volume 606) by Ping Xiao, Brian Ralph
2009 | ISBN: 0878493506 | English | 152 pages | PDF | 22 MB

Advances in Ceramic Materials (Materials Science Forum, volume 606)
This topical book, containing as it does state-of-the-art reviews, neatly encompasses the current status of research into ceramic materials.
The topics covered include: Thermal barrier coatings on nickel superalloy substrates; Silicon nitride ceramics; Challenges to the integration of piezoelectric ceramics into micro-electromechanical systems; When should microwaves be used to process technical ceramics?; Ceramic and glass matrix composites containing carbon nanotubes; Stresses in multilayered ceramics subjected to biaxial flexure; Advanced nano-scale metrology for the characterization of ceramic materials in the scanning electron microscope; Finite element calculation of sintering deformation using limited experimental data; Microstructural modeling of ferroelectric materials: state-of-the-art challenges and opportunities; Processing, microstructure and properties of nanograin barium titanate ceramics by spark plasma sintering.
These authoritative articles represent critical overviews of the most important developments made in ceramic science and technology, and will be of lasting interest and value.
Xiao (materials, U. of Manchester, UK) and Ralph (engineering and design, Brunel U., UK) assemble 10 articles describing current research on ceramic materials and developments in ceramic sciences and technology. Coverage encompasses thermal barrier coatings on nickel superalloy substrates; silicon nitride ceramics; the integration of piezoelectric ceramics into microelectrochemical systems; the use of microwaves in processing; ceramic and glass matrix composites containing carbon nanotubes; stresses in multilayered ceramics; nano-scale metrology for the characterization of materials; microstrucutral modeling; processing, microstructure, and properties of nanograin barium titanate ceramics; and other topics. Contributors work in materials science and engineering and ceramic physics in the UK, US, and Asia.
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Advances in Ceramic Materials (Materials Science Forum, volume 606)

FREEDownload : Advances in Ceramic Materials (Materials Science Forum, volume 606)

Advances in Ceramic Materials (Materials Science Forum, volume 606) by Ping Xiao, Brian Ralph
2009 | ISBN: 0878493506 | English | 152 pages | PDF | 22 MB

Advances in Ceramic Materials (Materials Science Forum, volume 606)
This topical book, containing as it does state-of-the-art reviews, neatly encompasses the current status of research into ceramic materials.
The topics covered include: Thermal barrier coatings on nickel superalloy substrates; Silicon nitride ceramics; Challenges to the integration of piezoelectric ceramics into micro-electromechanical systems; When should microwaves be used to process technical ceramics?; Ceramic and glass matrix composites containing carbon nanotubes; Stresses in multilayered ceramics subjected to biaxial flexure; Advanced nano-scale metrology for the characterization of ceramic materials in the scanning electron microscope; Finite element calculation of sintering deformation using limited experimental data; Microstructural modeling of ferroelectric materials: state-of-the-art challenges and opportunities; Processing, microstructure and properties of nanograin barium titanate ceramics by spark plasma sintering.
These authoritative articles represent critical overviews of the most important developments made in ceramic science and technology, and will be of lasting interest and value.
Xiao (materials, U. of Manchester, UK) and Ralph (engineering and design, Brunel U., UK) assemble 10 articles describing current research on ceramic materials and developments in ceramic sciences and technology. Coverage encompasses thermal barrier coatings on nickel superalloy substrates; silicon nitride ceramics; the integration of piezoelectric ceramics into microelectrochemical systems; the use of microwaves in processing; ceramic and glass matrix composites containing carbon nanotubes; stresses in multilayered ceramics; nano-scale metrology for the characterization of materials; microstrucutral modeling; processing, microstructure, and properties of nanograin barium titanate ceramics; and other topics. Contributors work in materials science and engineering and ceramic physics in the UK, US, and Asia.
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Perovskites: Structure, Properties and Uses

Maxim Borowski, "Perovskites: Structure, Properties and Uses"
English | ISBN: 1616685255 | 2011 | 571 pages | PDF | 19,8 MB
Perovskite is a calcium titanium oxide mineral species composed of calcium titanate. This book discusses perovskite thin films, which are widely employed in today's advanced technology. The broad range of physical properties in such category of materials has offered various functionalities in devices ranging from dynamic random access memories and ferroelectric nonvolatile memories to piezoelectric and optical devices. The structural, magnetic and electron transport properties of ordered-disordered perskovite cobaltites is discussed as is perovskite-type oxides, ferroelectric PbTiO3 from a single-domain state to composite components, and others.

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