Tag Archives: Nanostructures

“Advanced Topics on Crystal Growth” ed. by Sukarno Olavo Ferreira

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"Advanced Topics on Crystal Growth" ed. by Sukarno Olavo Ferreira
InTeOpP | 2013 | ISBN: 9535110101 9789535110101 | 432 pages | PDF | 41 MB
The objective of this book is not to cover all areas of crystal growth but just present, as specified in the title, important selected topics, as applied to organic and inorganic systems. All authors have been selected for being key researchers in their field of specialization, working in important universities and research labs around the world. This book is mostly recommended for students working in the field of crystal growth and for scientists and engineers in the fields of crystalline materials, crystal engineering and the industrial applications of crystallization processes.

“Advanced Topics on Crystal Growth” ed. by Sukarno Olavo Ferreira
Crystal growth is the key step of a great number of very important applications. The development of new devices and products, from the traditional microelectronic industry to pharmaceutical industry and many others, depends on crystallization processes.
The first section is mainly devoted to biological systems and covers topics like proteins, bone and ice crystallization.
The second section brings some applications to inorganic systems and describes more general growth techniques like chemical vapor crystallization and electrodeposition.

Contents
Preface
Section 1 Biological and Other Organic Systems
1 Proteins and Their Ligands: Their Importance and Howto Crystallize Them
2 Purification of Erythromycin by Antisolvent Crystallization orAzeotropic Evaporative Crystallization
3 Crystal Growth of Inorganic and Biomediated Carbonates and Phosphates
4 Direction Controlled Growth of Organic Single Crystals by Novel Growth Methods
5 Characterizations of Functions of Biological Materials Having Controlling-Ability Against Ice Crystal Growth
6 The Mineralization of Bone and Its Analogies with Other Hard Tissues
7 Modeling Ice Crystal Formation of Water in Biological System
8 Crystallization: From the Conformerto the Crystal
Section 2 Inorganic Systems
9 Chemical Vapor Transport Reactions-Methods, Materials, Modeling
10 Growth and Development of Sapphire Crystal for LED Applications
11 Crystal Growth by Electrodeposition with Supercritical Carbon Dioxide Emulsion
12 Inorganic Nanostructures Decorated Graphene
13 Metal Chalcogenides Tetrahedral Molecular Clusters: Crystal Engineering and Properties
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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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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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Biosensors Nanotechnology

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Biosensors Nanotechnology (Advanced Material Series) by Ashutosh Tiwari, Anthony P. F. Turner
2014 | ISBN: 1118773519 | English | 552 pages | PDF | 6 MB

Biosensors Nanotechnology
A new emerging field that combines nanoscale materials and biosensor technology is receiving increased attention. Nanostructures have been used to achieve direct wiring of biosensing elements to electrode surfaces, to promote bio-reactions, to impose nanobarcodes on biomaterials, and to amplify the signal from bio-recognition events. Nanomaterials based biosensors have found wide spread applications in the environmental and medical applications for their sensitivity, specificity, rapidity, simplicity, and cost-effectiveness.

In the same pursuit, Biosensors Nanotechnology provides detailed review chapters on a range of nanostructures such as nanoparticles, nanowires, nanotubes, nanoribbons, nanorods, nanobelts and nanosheets in the construction of biosensors with set applications of biosensors nanotechnology for biological and chemical analyses, food safety industry, biomedical diagnostics, clinical detection, and environmental monitoring.

The senior contributors write on the following topics:

ZnO and graphene microelectrode applications in biosensing
Assembly of polymers/metal nanoparticles
Gold nanoparticle-based electrochemical biosensors
Impedimetric DNA sensing employing nanomaterials
Graphene and carbon nanotube based biosensors
The-state-of-art of nanomedicine
Computational nanochemistry study
BFPF green fluorescent protein chromophore
Biosynthesis of metal nanoparticles
Ionic discotic liquid crystals
Role of advanced materials as nanosensors in water treatment
Bioconjugated-nanoporous gold films in electrochemical biosensors
Combination of molecular imprinting and nanotechnology
Recent development of fiber reinforced composite materials
Principal and properties of multiferroics and ceramics
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Nanotechnology: Science and Computation (Natural Computing Series) by Junghuei Chen

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Nanotechnology: Science and Computation (Natural Computing Series) by Junghuei Chen
English | Dec 20, 2005 | ISBN: 3540302956 | 383 Pages | PDF | 6 MB
Nanoscale science and computing is becoming a major research area as today's scientists try to understand the processes of natural and biomolecular computing. The field is concerned with the architectures and design of molecular self-assembly, nanostructures and molecular devices, and

Nanotechnology: Science and Computation (Natural Computing Series) by Junghuei Chen
with understanding and exploiting the computational processes of biomolecules in nature.
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Nanotechnology: Science and Computation (Natural Computing Series) by Junghuei Chen

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Nanotechnology: Science and Computation (Natural Computing Series) by Junghuei Chen
English | Dec 20, 2005 | ISBN: 3540302956 | 383 Pages | PDF | 6 MB
Nanoscale science and computing is becoming a major research area as today's scientists try to understand the processes of natural and biomolecular computing. The field is concerned with the architectures and design of molecular self-assembly, nanostructures and molecular devices, and

Nanotechnology: Science and Computation (Natural Computing Series) by Junghuei Chen
with understanding and exploiting the computational processes of biomolecules in nature.
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