Materials Research Society Symposium Proceedings. Volume 724. Biological and Biomimetic Materials - Properties to Function

Materials Research Society Symposium Proceedings. Volume 724. Biological and Biomimetic Materials - Properties to Function
Title Materials Research Society Symposium Proceedings. Volume 724. Biological and Biomimetic Materials - Properties to Function PDF eBook
Author
Publisher
Pages 0
Release 2002
Genre
ISBN

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Biological and Biomimetic Materials--properties to Function

Biological and Biomimetic Materials--properties to Function
Title Biological and Biomimetic Materials--properties to Function PDF eBook
Author Joanna Aizenberg
Publisher
Pages 264
Release 2002
Genre Science
ISBN

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Materials scientists, chemists, biologists, physicists, bioengineers and clinicians join together in this volume to focus on the formation, function and structural characterization of biologically formed organic and inorganic materials. Recent developments in bioinspired materials synthesis are also featured. In all of these areas, understanding the structures and kinetics of the interfaces between crystals and other ordered or disordered molecular assemblies requires consideration of multiple chemical species, intermolecular interactions, self assembly, molecular anisotropy, and the structure of the interface between fluid and solid phases. Of particular interest are new materials engineered to replace or restore tissue functions. Topics include: materials in natural biological tissues; imaging and characterization techniques; organic biomaterials--proteins and peptides; interface engineering, patterning and biocompatibility; composite biomaterials--bones and teeth; biomaterials; tissue engineering; biomimetics, sensors and nanotechnology; and materials for drug and gene delivery.

Novel Materials and Processes for Advanced CMOS: Volume 745

Novel Materials and Processes for Advanced CMOS: Volume 745
Title Novel Materials and Processes for Advanced CMOS: Volume 745 PDF eBook
Author Mark I. Gardner
Publisher
Pages 408
Release 2003-03-25
Genre Computers
ISBN

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Progress in MOS integrated-circuit technology is largely driven by the ability to dimensionally scale the constituent components of individual devices and their associated interconnections. Given a set of materials with fixed properties, this scaling is finite and its predicted limits are rapidly approaching. The International Technology Roadmap for Semiconductors establishes the pace at which this scaling occurs and identifies many of the technological challenges ahead. This volume assembles representatives from the fields of materials science, physics, electrical and chemical engineering to provide an insightful review of current technology and understanding. Specifically, the intent is to discuss materials issues stemming from device scaling to sub-100nm technology nodes. Topics include: high-k characterization; atomic layer deposition; gate metal materials and integration; contacts and ultrashallow junction formation; theory and modeling and crystalline oxides for gate dielectrics.

Reflexive Polymers and Hydrogels

Reflexive Polymers and Hydrogels
Title Reflexive Polymers and Hydrogels PDF eBook
Author Nobuhiko Yui
Publisher CRC Press
Pages 469
Release 2004-03-17
Genre Medical
ISBN 0203485351

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. Despite their capacity to carry out functions that previously were unobtainable, smart polymers and hydrogels tend to have painfully slow response times. On the other hand biological systems go through phase changes at an extremely fast rate. Reflexive Polymers and Hydrogels examines the natural systems that respond almost instantaneously to envi

Materials and Devices for Optoelectronics and Microphotonics

Materials and Devices for Optoelectronics and Microphotonics
Title Materials and Devices for Optoelectronics and Microphotonics PDF eBook
Author Ralf B. Wehrspohn
Publisher
Pages 520
Release 2002
Genre Technology & Engineering
ISBN

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This volume combines the proceedings of Symposium K, Materials and Devices for Optoelectronics and Photonics, and Symposium L, Photonic Crystals--From Materials to Devices, both from the 2002 MRS Spring Meeting in San Francisco. The two symposia served as a unique meeting place where a community of materials scientists and device-oriented engineers could present their latest results. Papers from Symposium K concentrate on materials for solid-state lighting, with particular emphasis on nitrides and other high-bandgap semiconductors and quantum dots, as well as materials for optical waveguides and interconnects. Presentations from Symposium L discuss theoretical methods and materials and fabrication techniques for 2D and 3D photonic crystals, with special emphasis on tunability of photonic crystals.

Materials Inspired by Biology

Materials Inspired by Biology
Title Materials Inspired by Biology PDF eBook
Author James L. Thomas (Ph. D.)
Publisher
Pages 280
Release 2003
Genre Medical
ISBN

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Continued interest in the field of biologically inspired materials is strongly motivated by the fact that the nanoscale and microscale organization found in biological materials often leads to exceptional macroscopic materials properties. The ability to mimic these structures should lead to new synthetic materials with similarly remarkable behavior in both biomedical and materials arenas. This has led to an enormous amount of research in a variety of materials areas, including those aimed at: 1) unique ceramics or composites for use in biomaterials, magnetic and optical applications; 2) self-assembled biopolymeric systems for use in biomaterials and biosensor applications; and 3) colloidal and amphiphilic systems for application in biomedicine, nanotechnology and biosensors. Accordingly, this volume brings together a broad range of researchers whose interests span the full breadth of biology, and in addition, those who find different inspiration in biology itself. For some, that inspiration is in the creation of new materials that have important biological (especially biomedical) applications. For others, it is the imitation of the behavior of a biological material, molecule or process that is of interest. Finally, with increasing frequency, researchers are drawing inspiration from the synthetic pathways that biology uses, exploiting these pathways, and modifying them chemically or genetically to make entirely novel molecules and materials. Biologically inspired materials is a rapidly evolving arena of materials science research, and the work presented here reflects recent advances and new perspectives in the field. Topics include: tissue engineering and biomaterials; novel biomimeticand bioinspired polymers; biomineralization, colloidal and templated materials; and amphiphilic membranes and surfaces.

Defect Properties and Related Phenomena in Intermetallic Alloys: Volume 753

Defect Properties and Related Phenomena in Intermetallic Alloys: Volume 753
Title Defect Properties and Related Phenomena in Intermetallic Alloys: Volume 753 PDF eBook
Author Materials Research Society. Meeting
Publisher
Pages 596
Release 2003-06-25
Genre Technology & Engineering
ISBN

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Defects such as dislocations, antiphase domains and grain boundaries, interstitials/substitutionals, and vacancies affect many physical and mechanical properties of ordered intermetallics. As a result, they often play a decisive role in determining the macroscopic behavior of not just structural intermetallics but also 'functional' intermetallics such as shape memory alloys and hydrogen storage materials. This book follows in the general tradition of the highly successful series of MRS symposia titled High-Temperature Ordered Intermetallic Alloys. However, it also represents a significant departure from its predecessors: it includes papers on functional intermetallics in addition to papers on structural intermetallics; and focuses on defects and how they affect various properties of interest in structural and functional intermetallics. Roughly 30 percent of the papers in the book are on functional intermetallics, including materials for hydrogen storage, magnetic, and shape memory applications. The remaining papers deal with structural intermetallics, including the still active areas of nickel-, iron-, and titanium-aluminides, as well as the newer materials for ultrahigh-temperature applications.