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An important resource for students, engineers and researchers working in the area of thin film deposition using physical vapor deposition;
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Sputtered Thin Films: Theory and Fractal Descriptions provides an overview of sputtered thin films and demystifies the concept of fractal;
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The Handbook of Thin Film Process Technology is a practical handbook for the thin film scientist, engineer and technician. This handbook;
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Thin films have an extremely broad range of applications from electronics and optics to new materials and devices. Collaborative and;
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Chemical Solution Synthesis for Materials Design and Thin Film Device Applications presents current research on wet chemical techniques for;
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In this valuable work, all aspects of the reactive magnetron sputtering process, from the discharge up to the resulting thin film growth;
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focuses on developing pulsed dc reactively sputtered tantalum oxide (Ta2O5) thin film capacitors for IC chips and packages. A design space for;
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resulting thin film characteristics. Ionization of sputtered atoms is discussed in detail for various target materials. In addition, the role;
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> Transition Metal Oxide Thin Film-Based Chromogenics and Devices covers both the theoretical aspects of TMO thin film-based chromogenics;
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innovative new materials, devices and systems. Organized into three parts for ease of use, this Handbook introduces the fundamentals;
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micromechanics, and thin films form a uniquely versatile material base for the development of novel technologies within these industries. Thin film;
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thermoelectricity; thermoelectric thin film and multilayer materials manufacturing technologies; measurement techniques for characterization; thermoelectric;
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Electric or magnetic tunability of RF and microwave devices is desirable for a variety of civilian and military applications. Tremendous;
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This book provides the latest research & developments and future trends in photoenergy and thin film materials-two important areas that;
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, through solar panels for the 'green-power' generation, to surface micromanaged MEMS devices. Thin-film silicon can possess a diverse range;
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major driving forces for research and development of thin-film silicon materials and devices. In the last few years, the thin-film silicon;
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students of profile faculties of universities, as well as for developers and manufacturers of thin-film lithium-ion batteries.;
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nanostructured devices used to produce clean energy. This third volume, Organic Nanostructured Thin Film Devices and Coatings for Clean Energy;
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nanostructured devices used to produce clean energy. This third volume, Organic Nanostructured Thin Film Devices and Coatings for Clean Energy, addresses;
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, chevrons, columns, and other porous thin film architectures using physical vapour deposition processes such as sputtering or evaporation. The book;
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Thin-film solar cells are either emerging or about to emerge from the research laboratory to become commercially available devices finding;
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high energy consumption during production. The way forward is to move towards thin-film solar cells using alternative materials and low-cost;
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Thin films of amorphous nano-, micro- and polycrystalline silicon, and related alloys, are used in active-matrix liquid crystal displays;
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of the most important and widely used plasma deposited thin film materials, devices and their applications.;
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techniques for low-mobility electronic devices; characterizes the thin-film transistor using its own model; links the phenomena seen in different;
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, morphological, surface, and spectroscopic properties of the materials. It contains both experimental as well as theoretical aspects for different types;
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