CMOS-MEMS: Advanced Micro and Nanosystems
May 25, 2010 by AboutNanoWires.com · Leave a Comment
Product Description
Microstructures, electronics, nanotechnology – these vast fields of research are growing together as the size gap narrows and many different materials are combined. Current research, engineering sucesses and newly commercialized products hint at the immense innovative potentials and future applications that open up once mankind controls shape and function from the atomic level right up to the visible world without any gaps.
Sensor systems, microreactors, nanostructures, nanomachines, functional surfaces, integrated optics, displays, communications technology, biochips, human/machine interfaces, prosthetics, miniaturized medical and surgery equipment and many more opportunities are being explored.
This new series, Advanced Micro and Nano Systems, provides cutting-edge reviews from top authors on technologies, devices and advanced systems from the micro and nano worlds.
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Functionalized Nanoscale Materials, Devices and Systems
May 20, 2010 by AboutNanoWires.com · Leave a Comment
Product Description
This book arises from the NATO Advanced Study Institute (ASI) titled “Functionalized Nanoscale Materials, Devices, and Systems for chem.-bio Sensors, Photonics, and Energy Generation and Storage” held in Sinaia, Romania in June 2007. It comprises a variety of invited contributions by highly experienced educators, scientists, and industrialists, and is structured to cover important aspects of the field, from underlying principles, synthesis routes, characterizations, applications, and detailed considerations of commercial viability. In addition, the book consists of a selection of contributed articles describing various aspects of their current research and development activities. Several related topics ranging from nanomaterial in chemical-biological sensors, to energy storage and generation devices, and to environmental protection and pollution remediation. Several top-down (attrition) and bottoms-up (self-assembly) approaches to prepare nanomaterials are discussed. In addition, several synthesis routes, viz. synthesis using new laser systems generating ultra-short (ns, ps, fs, and very recently, as pulses) with very high quality beams that allow very accurate focusing, provide unique tools for handling and processing nanomaterials in the form of nanocoatings, nanopowders, nanotubes, and other advanced structures are also included in the book. It will be of considerable interest and value to those already pursuing or considering careers in the field of nanostructured materials and nanotechnology, in general. It also serves as a valuable source of information for those interested in related aspects of the field, such as science and technology of thin film materials and devices.
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Advances Solid State Physics 42
May 20, 2010 by AboutNanoWires.com · Leave a Comment
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This volume contains most of the invited talks of the 2002 Spring meeting of the Solid State Physics Section of the Deutsche Physikalische Gesellschaft. The contributions present the results of current research in the fields of semiconductor physics, low temperature physics and thin layer physics. The topics covered reflect the present activities in this lively domain of modern physics and thus flashlight the state of the art in condensed matter physics in Germany in the year 2002.
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Handbook of Nanophase Materials
May 20, 2010 by AboutNanoWires.com · Leave a Comment
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Integrating;in a single-source volume;current research on submicron-sized domain materials, this invaluable reference provides fundamental insight into particle size control and nanophase methodologies and materials;addressing specific problems in a host of research fields, including chemistry, physics, materials science, and engineering.
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Future Trends in Microelectronics: The Nano, the Giga, and the Ultra
May 20, 2010 by AboutNanoWires.com · Leave a Comment
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The continuing miniaturization in silicon devices has led to current research in such topics as Nanoelectronics, Quantum Cascade Lasers, Nanomaterials and applications in biology. In this book leading professionals in the semiconductor microelectronics field discuss the future evolution of their profession through questions such as:
* As the end of CMOS scaling is approaching, what kind of research does the silicon industry need to continue its expansion?
* What is its future beyond shrinking silicon devices?
* Is there practicality in such fashionable topics as quantum computing, molecular computing, spintronics, and similar research trends?
* What is the most likely future of microelectronis in the near and long term?
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