Tag Archives: Properties

“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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Dekker Encyclopedia of Nanoscience and Nanotechnology, 2nd Edition (6 Volume Set)

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Sergey Edward Lyshevski, Cristian I Contescu, "Dekker Encyclopedia of Nanoscience and Nanotechnology, 2nd Edition (6 Volume Set)"
2008 | ISBN-10: 0849396395 | 5912 pages | PDF | 158 MB

Dekker Encyclopedia of Nanoscience and Nanotechnology, 2nd Edition (6 Volume Set)
With its original publication, the Dekker Encyclopedia of Nanoscience and Nanotechnology immediately became the reference against which all other nano references are measured. Noting that the encyclopedia was being assembled by leading authorities at an early stage in the field's development, Sir Harry Kroto, 1996 Nobel Prize winner in Chemistry, rightfully predicted that the encyclopedia would bring together key advances in a "coherently organized framework." Continuing to cover the field as no other resource, the six-volume second edition crosses disciplines to examine fundamental nano principles, theories, and methodologies, as well as the latest information on nano-relevant properties. It also covers advances in nanoscale engineering, newly developed simulation tools, and emerging computational methods.

Among other accolades, this million-dollar bestseller has gone on to win an Outstanding Academic Book Award from CHOICE magazine.
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“Advanced Elastomers: Technology, Properties and Applications” ed. by Anna Boczkowska

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"Advanced Elastomers: Technology, Properties and Applications" ed. by Anna Boczkowska
InTeOpP | 2012 | ISBN: 9535107399 9789535107392 | 412 pages | PDF | 55 MB
This book provides an extensive overview of current trends in the area of elastomers and their composites from the chapters contributed by internationally recognized specialists. The book deals with novel synthesis, modelling and experimental methods in elastomers. This book addresses to industrial and academic researchers in the fields of physical, chemical, biological sciences and engineering.

“Advanced Elastomers: Technology, Properties and Applications” ed. by Anna Boczkowska
Contents include: new approach to crosslinking, liquid crystal elastomers, nanocomposites, smart elastomers, elastomers in microelectronics and microfluidics, elastomers in cement concrete and mortar, experimental testing and modelling.
Each section demonstrates how enhancements in materials, processes and characterization techniques can improve performance in the field of engineering. The book provides a unique opportunity to discover the latest research on elastomer advances from laboratories around the world.

Contents
Preface
Section 1: New Approach to Elastomer Cross I inking
1 Aspects Regarding Radiation Cross I inking of Elastomers
Section 2: Liquid Crystal Elastomers
2 Monitoring the Contractile Properties of Optically Patterned Liquid Crystal Based Elastomers
3 Polysiloxane Side-Chain Azobenzene-Containing Liquid Single Crystal Elastomers for Photo-Active Artificial Muscle-Like Actuators
Section 3: Elastomer Nanocomposites
4 Rubber Clay Nanocomposites
5 Pigment and Dye Modified Fillers as Elastomeric Additives
Section 4: Smart Elastomers
6 Microstructure and Properties of Magnetorheological Elastomers
7 Thermo-Shrinkable Elastomers
Section 5: Elastomers in Microelectronics and Microflu id ics
8 Elastomer Application in Microsystem and Microflu id ics
9 Elasto meric Electronics: A Microflu id ic Approach
10 Use of Silicone Elastomer-Based Microfluidic Devices and Systems in Reproductive Technologies
Section 6: Elastomers in Cement Concrete and Mortar
11 Technology, Properties and Application of NRL Elastomers
Section 7: Experimental Testing and Modelling of Elastomer Properties
12 Transmittance and Reflectance of an Imprinted Cholesteric Elastomer During a Segregation Process
13 Anelastic Behavior in Filled Elastomers Under Harmonic Loading Using Distributed Rate-Dependent Elasto-Slide Elements
14 Modelling Friction and Abrasive Wear of Elastomers
15 The Significance of Equi-Biaxial Bubble Inflation in Determining Elasto meric Fatigue Properties
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Glycopolymers: Synthesis and Applications

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Ravin Narain, "Glycopolymers: Synthesis and Applications"
2014 | ISBN-10: 1909030813 | 180 pages | PDF | 6 MB

Glycopolymers: Synthesis and Applications
Glycopolymers have received considerable interest in recent years due to their increasing potential applications in material science and biomedicine. With better understanding of the role of carbohydrates in biological systems and with recent advances in organic and carbohydrate chemistry, the design and synthesis of glycopolymers have become simpler where significant research efforts have been carried out towards the fabrication of advanced glyco-polymeric architectures for improved performance. This book provides an update on the recent advances on the synthesis of glycopolymers, their characterisations, their biological properties and their applications. The first objective of this book is to provide the readers a detailed overview about the synthesis of glycopolymers via several modern polymerisation techniques. The characterisation of these materials and their solution properties are also discussed. In addition to this, the conjugation of glycopolymers to different types of biomacromolecules are discussed. The second objective of this book is to provide the readers a detailed overview of the applications glycopolymers. In addition, the biological properties of the glycopolymers as a function of the types of carbohydrates attached, the polymer architectures and compositions are elaborated. This update will provide a quick reference to students and researchers working in both academia and industry.
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“Acoustic Waves: From Microdevices to Helioseismology” ed. by Marco G. Beghi

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"Acoustic Waves: From Microdevices to Helioseismology" ed. by Marco G. Beghi
InTeOpP | 2011 | ISBN: 9533075724 9789533075723 | 665 pages | PDF | 51 MB
This book presents several aspects of the active research ongoing in the field of Acoustic Waves. Theoretical efforts are leading to a deeper understanding of phenomena, also in complicated environments like the solar surface boundary. A whole class of widespread microdevices, including filters and sensors, is based on the behaviour of acoustic waves propagating in thin layers. The search for better performances is driving to new materials for these devices, and to more refined tools for their analysis.

“Acoustic Waves: From Microdevices to Helioseismology” ed. by Marco G. Beghi
Contents
Part 1 Theoretical and Numerical Investigations of Acoustic Waves
1 Analysis of Acoustic Wave in Homogeneous and Inhomogeneous Media Using Finite Element Method
2 Topological Singularities in Acoustic Fields due to Absorption of a Crystal
3 An Operational Approach to the Acoustic Analogy Equations
4 Exact Solutions Expressible in Hyperbolic and Jacobi Elliptic Functions of Some Important Equations of Ion-Acoustic Waves
5 A coustic Wave
Part 2 Acoustic Waves as Investigative Tools
6 Acoustic Waves: A Probe for the Elastic Properties of Films
7 Evaluation Method for Anisotropic Drilling Characteristics of the Formation by Using Acoustic Wave Information
8 Machinery Faults Detection Using Acoustic Emission Signal
9 Compensation of Ultrasound Attenuation in Photoacoustic Imaging
10 Low Frequency Acoustic Devices for Viscoelastic Complex Media Characterization
11 Modeling of Biological Interfacial Processes Using Thickness-Shear Mode Sensors
12 Analysis of Biological Acoustic Waves by Means of the Phase-Sensitivity Technique
13 Photoacoustic Technique Applied to Skin Research: Characterization of Tissue, Topically Applied Products and Transdermal Drug Delivery
14 Acoustic-Gravity Waves in the Ionosphere During Solar Eclipse Events
Part 3 Acoustic Waves as Manipulative Tools
15 Use of Acoustic Waves for Pulsating Water Jet Generation
16 Molecular Desorption by Laser-Driven Acoustic Waves: Analytical Applications and Physical Mechanisms
17 Excitation of Periodical Shock Waves in Solid-State Optical Media (Yb:YAG, Glass) at SBS of Focused Low-Coherent Pump Radiation: Structure Changes, Features of Lasing
18 An Optimal Distribution of Actuatorsin Active Beam Vibration: Some Aspects, Theoretical Considerations
Part 4 Acoustic Wave Based Microdevices
19 Multilayered Structure as a Novel Material for Surface Acoustic Wave Devices: Physical Insight
20 SAW Parameters Analysis and Equivalent Circuit of SAW Device
21 Sources of Third-Order Intermodulation Distortion in Bulk Acoustic Wave Devices: A Phenomenological Approach
22 Shear Mode Piezoelectric Thin Film Resonators
23 Polymer Coated Rayleigh SAW and STW Resonators for Gas Sensor Applications
24 Ultrananocrystalline Diamond as Material for Surface Acoustic Wave Devices
25 Aluminum Nitride (AIN) Film Based Acoustic Devices: Material Synthesis and Device Fabrication
26 Surface Acoustic Wave Devices for Harsh Environment
27 Applications of In-Fiber Acousto-Optic Devices
28 Surface Acoustic Waves and Nano-Electromechanical Systems
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Hierarchical Nanostructures for Energy Devices

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Hierarchical Nanostructures for Energy Devices by Seung H Ko and Costas P Grigoropoulos
English | 2014 | ISBN: 1849736286 | 322 pages | PDF | 15 MB

Hierarchical Nanostructures for Energy Devices
Surface area has a directly relationship with the efficiency of energy devices. Hierarchical nanostructuring has the potential to greatly increase surface area, and their electrical properties are favourable, not only to energy generation and storage, but also energy-consuming electronic circuits.

This book provides systematic coverage of how nanostructured materials can be applied to energy devices, with an emphasis on the process of generation to storage and consumption. The fundamentals (including properties, characterisation and synthesis) are clearly presented across the first chapters of the book, providing readers new to the field with a clear overview of this expanding topic. The detailed discussion of applications will be an inspiration to those already well-versed in the field.

The editors have more than a decade of experience in working on all aspects of energy generation and storage – in academia, national laboratories and industry. The book presents a balanced view from all sectors and is presented in a format accessible by postgraduate students and professional researchers alike.
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Hierarchical Nanostructures for Energy Devices

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Hierarchical Nanostructures for Energy Devices by Seung H Ko and Costas P Grigoropoulos
English | 2014 | ISBN: 1849736286 | 322 pages | PDF | 15 MB

Hierarchical Nanostructures for Energy Devices
Surface area has a directly relationship with the efficiency of energy devices. Hierarchical nanostructuring has the potential to greatly increase surface area, and their electrical properties are favourable, not only to energy generation and storage, but also energy-consuming electronic circuits.

This book provides systematic coverage of how nanostructured materials can be applied to energy devices, with an emphasis on the process of generation to storage and consumption. The fundamentals (including properties, characterisation and synthesis) are clearly presented across the first chapters of the book, providing readers new to the field with a clear overview of this expanding topic. The detailed discussion of applications will be an inspiration to those already well-versed in the field.

The editors have more than a decade of experience in working on all aspects of energy generation and storage – in academia, national laboratories and industry. The book presents a balanced view from all sectors and is presented in a format accessible by postgraduate students and professional researchers alike.
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Seed Oil: Biological Properties, Health Benefits and Commercial Applications

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Seed Oil: Biological Properties, Health Benefits and Commercial Applications by Alexis Varnham
English | 2014 | ISBN: 1634630564 | 1019 pages | PDF | 3 MB

Seed Oil: Biological Properties, Health Benefits and Commercial Applications
The importance of fats for humans, animals and plants lies in their high content of energy. In addition, fats allow humans and animals to consume fat-soluble vitamins and provide them with essential fatty acids (FAs), which are indispensable because their bodies are unable to synthesize themselves. Vegetable oils are used for many food and industrial purposes. Although a wide variety of sources of vegetable oils, global consumption is dominated by palm, soybean, rapeseed and sunflower oils. In recent years there has been development of underexploited promising plant species as a source of dietary or specialty oils. Many of them contain significant quantities of oils and/or a high proportion of nutritionally, medicinally or industrially desirable FAs. This book discusses the biological properties, health benefits and commercial applications on seed oils.
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Biomimetic Architectures by Plasma Processing: Fabrication and Applications

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Biomimetic Architectures by Plasma Processing: Fabrication and Applications by Surojit Chattopadhyay
English | 2014 | ISBN: 9814463949 | 254 pages | PDF | 30 MB

Biomimetic Architectures by Plasma Processing: Fabrication and Applications
Plasma-processed biomimetic structures are an extremely focused and small subset of biomimetics. Although other methods can also be adopted, experimental synthesis of biomimetic structures mainly focuses on plasma processing. This book deals with the theoretical description of photonic structures available in nature, and the physics and applications of biomimetic structures prepared in the laboratory. It discusses anti-reflection properties of moth eye- or cicada wing-type nanostructured materials on semiconductor surfaces, with emphasis on plasma fabrication procedures. It also explains, with the help of related theories, the superhydrophobic or hydrophilic wetting properties demonstrated by most of these natural structures. It discusses biomedical applications, especially in implants, as one of the key applications of such materials.
The book focuses mainly on plasma processing of biomimetic nanostructures and is, therefore, different from similar books that are more general in nature. It presents essential schematics, sufficient details, and advanced instrumentation techniques that would help readers understand why these structures are considered so important in materials science and physics.
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Nonlinear Optical Crystals: A Complete Survey

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Nonlinear Optical Crystals: A Complete Survey
English | Physics, Optics | 9. February 2005 | ISBN-10: 0387220224 | 428 pages | pdf | 3 mb
Nonlinear Optical Crystals contains the most complete and up-to-date reference material on properties of nonlinear optical crystals including:
Traditional and specific applications

Nonlinear Optical Crystals: A Complete Survey
The mathematical formulas necessary for the calculation of the frequency conversion process

A survey of 63 nonlinear optical crystals containing more than 1500 different references with full titles

Recent applications of common and novel nonlinear materials, including quasi-phase matching

Special consideration for periodically-poled and self-frequency-doubling materials

Significant amount of crystallophysical, thermophysical, spectroscopic, electro-optic and magneto-optic information
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