Tag Archives: biomaterials

“Advanced Plasma Spray Applications” ed. by Hamidreza Salimi Jazi

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"Advanced Plasma Spray Applications" ed. by Hamidreza Salimi Jazi
InTeOpP | 2012 | ISBN: 9535103490 9789535103493 | 248 pages | PDF | 20 MB
Some state-of-the-art studies of advanced applications of plasma spraying such as nanostructure coatings, surface modifications, biomaterial deposition, and anti wear and corrosion coatings are presented in this book.

“Advanced Plasma Spray Applications” ed. by Hamidreza Salimi Jazi
Contents
Preface
Part 1 Plasma Spray for Corrosion and Wear Resistance
1 Thermal Sprayed Coatings Used Against Corrosion and Corrosive Wear
2 The Influence of Dry Particle Coating Parameters on Thermal Coatings Properties
3 Isothermal Oxidation Behavior of Plasma Sprayed MCrAlY Coatings
4 Analysis of Experimental Results of Plasma Spray Coatings Using Statistical Techniques
Part 2 Plasma Spray in Biomaterials Applications
5 Plasma Sprayed Bioceramic Coatings on Ti-Based Substrates: Methods for Investigation of Their Crystallographic Structures and Mechanical Properties
6 Effect of Hydrothermal Self-Healing and Intermediate Strengthening Layers on Adhesion Reinforcement of Plasma-Sprayed Hydroxyapatite Coatings
Part 3 Plasma Spray in Nanotechnology Applications
7 Solution and Suspension Plasma Spraying of Nanostructure Coatings
8 A Solid State Approach to Synthesis Advanced Nanomaterials for Thermal Spray Applications
Part 4 Plasma Spray in Polymer Applications
9 Atmospheric Pressure Plasma Jet Induced Graft-Polymerization for Flame Retardant Silk
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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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Biomedical Microsystems

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Biomedical Microsystems By Ellis Meng, search results
2010 | 408 Pages | ISBN: 1420051229 | PDF | 24 MB

Biomedical Microsystems
Poised to dramatically impact human health, biomedical microsystems (bioMEMS) technologies incorporate various aspects from materials science, biology, chemistry, physics, medicine, and engineering. Reflecting the highly interdisciplinary nature of this area, covers the fundamentals of miniaturization, biomaterials, microfabrication, and nanotechnology, along with relevant applications.
Written by an active researcher who was recently named one of Technology Review’s Young Innovators Under 35, the book begins with an introduction to the benefits of miniaturization. It then introduces materials, fabrication technology, and the necessary components of all bioMEMS. The author also covers fundamental principles and building blocks, including microfluidic concepts, lab-on-a-chip systems, and sensing and detection methods. The final chapters explore several important applications of bioMEMS, such as microdialysis, catheter-based sensors, MEMS implants, neural probes, and tissue engineering.
For readers with a limited background in MEMS and bioMEMS, this book provides a practical introduction to the technology used to make these devices, the principles that govern their operation, and examples of their application. It offers a starting point for understanding advanced topics and encourages readers to begin to formulate their own ideas about the design of novel bioMEMS. A solutions manual is available for instructors who want to convert this reference to classroom use.

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Advanced Structural Materials: Properties, Design Optimization, and Applications

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Advanced Structural Materials: Properties, Design Optimization, and Applications (Materials Engineering) by Winston O. Soboyejo
English | Dec 21, 2006 | ISBN: 1584886226 | ASIN: 1574446347 | 528 Pages | PDF | 13 MB
A snapshot of the central ideas used to control fracture properties of engineered structural metallic materials, Advanced Structural Materials: Properties, Design Optimization, and Applications illustrates the critical role that advanced structural metallic materials play in aerospace, biomedical, automotive, sporting goods, and other industries in the twenty-first century.

Advanced Structural Materials: Properties, Design Optimization, and Applications
The book presents an overview of the structure, properties, and applications of these materials, including the basic ideas behind their design. It contains examples and accessible language, elucidating the basic concepts that guide the development of new alloys and composite materials.
With in-depth reviews from leading contributors, the text develops an understanding of the breadth and depth of advances in the field. It begins with a broad introduction to advanced structural materials, then examines materials at the frontiers of emerging applications such as biomaterials, MEMS, amorphous materials, and nanotechnology. The chapter authors are experts in their own right and they assume no prior knowledge of a given material system, delineating the fundamental concepts and applications of advanced structural materials. The rich array of carefully selected topics provides useful insights into the structure, properties, and applications of advanced structural materials.
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