Nanoscience and nanoengineering : advances and applications

書誌事項

Nanoscience and nanoengineering : advances and applications

edited by Ajit D. Kelkar, Daniel J.C. Herr, James G. Ryan

CRC Press, 2017, c2014

  • : pbk.

この図書・雑誌をさがす
注記

Includes bibliographical references and index

"First issued in paperback 2017"--T.p. verso

内容説明・目次

内容説明

Reflecting the breadth of the field from research to manufacturing, Nanoscience and Nanoengineering: Advances and Applications delivers an in-depth survey of emerging, high-impact nanotechnologies. Written by a multidisciplinary team of scientists and engineers and edited by prestigious faculty of the Joint School of Nanoscience and Nanoengineering, this book focuses on important breakthroughs in nanoelectronics, nanobiology, nanomedicine, nanomodeling, nanolithography, nanofabrication, and nanosafety. This authoritative text: Addresses concerns regarding the use of nanomaterials Discusses the advantages of nanocomposites versus conventional materials Explores self-assembly and its potential for nanomanufacturing applications Covers compound semiconductors and their applications in communications Considers display technology and infrared optics in relation to nanoelectronics Explains how computational nanotechnology is critical to the design of process materials and nanobiotechnologies Describes the design and fabrication of nanoelectromechanical systems (NEMS) and their applications in nanomedicine By seamlessly integrating interdisciplinary foundational science with state-of-the-art engineering tools, Nanoscience and Nanoengineering: Advances and Applications offers a holistic approach to understanding the mechanisms underpinning the nanotechnology-based products we enjoy today, as well as those that will change our society in the near future.

目次

The Mechanical and Biological Paradigms. NEMS: Processes and Devices. A Study of Ga Assisted Growth of GaAs/GaAsSb Axial Nanowires by Molecular Beam Epitaxy. Applications of Micro/Nanotechnology in Design and Control of Neural Interfaces. Characterization of Biological and Condensed Matter at the Nanoscale. Biological Nanostructures: Formation, Function, and Potential Applications. Current Nanodelivery Systems for Imaging and Therapeutics. Nanodevices and Systems for Clinical Diagnostics. Fullerenes and Their Potential in Nanomedicine. Modeling at Nanoscale: Material Chemistry Level Modeling in Processing and Mechanics of Engineered Materials. Computational Modeling of Bio-Nano Interfaces. Multiscale Glass Fiber Reinforced Composite Developed from Epoxy Resin Containing Electrospun Glass Nanofibers. Templated Self-Assembly for Nanolithography and Nanofabrication: Overview and Selected Examples. Understanding Toxicity of Engineered Nanomaterials. The Safety of Nanomaterials: What We Know and What We Need to Know.

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