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. Porous Silicon: Biomedical and Sensor Applications, Volume Two is part of the three-book series Porous Silicon: From Formation to Application. It;
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formation, characterizations, and applications. Porous Silicon: From Formation to Application provides an up-to-date single source;
Vergelijkbare producten zoals Porous Silicon
. Porous Silicon: Biomedical and Sensor Applications, Volume Two is part of the three-book series Porous Silicon: From Formation to Application. It;
Vergelijkbare producten zoals Porous Silicon
Silicon: From Formation to Applications: Optoelectronics, Microelectronics, and Energy Technology Applications, Volume Three is an indispensable;
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Hydrogen generation and storage Porous silicon-based composites Porous Silicon: From Formation to Applications: Optoelectronics;
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applications of porous silicon, from biosensing and imaging to tissue engineering and cancer therapy. Across biomedical disciplines, there;
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thorough introduction to current knowledge of the formation, processing, and properties of porous silicon. It also analyzes present and potential;
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thorough introduction to current knowledge of the formation, processing, and properties of porous silicon. It also analyzes present and potential;
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Porous Silicon Carbide and Gallium Nitride: Epitaxy, Catalysis, and Biotechnology Applications presents the state-of-the-art in knowledge;
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luminescent silicon nanostructures, from porous silicon to nanocrystals and nanorods. Attention is devoted to the most promising applications of these;
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biocompatability, in addition to an appendix and glossary. Sensors in Biomedical Applications is the definitive reference book for a broad audience. All;
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This comprehensive tutorial guide to silicon nanomaterials spans from fundamental properties, growth mechanisms, and processing;
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applications as programmable drug delivery or advanced, braincontrolled prosthetics. Porous silicon research is active in the fields of sensors, tissue;
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developments. From low-dimensional structures, quantum dots, and nanowires to hybrid materials, arrays, networks, and biomedical applications, this;
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synthesis of polyurethanes for biomedical applications; pyridine-type defects in graphene; amorphous silicon carbide thin film formation at room;
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through fiber-optic cables and computer chips. Its application has also evolved from the device to the integrated-system level. A timely overview;
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through fiber-optic cables and computer chips. Its application has also evolved from the device to the integrated-system level. A timely overview;
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developments. From low-dimensional structures, quantum dots, and nanowires to hybrid materials, arrays, networks, and biomedical applications, this;
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developments. From low-dimensional structures, quantum dots, and nanowires to hybrid materials, arrays, networks, and biomedical applications;
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environmental applications; transmission electron microscopy application on y-Al2O3 single crystal formation during NiAl oxidation and applied to fuel;
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phenomena, modeling transport properties, and transport in biomedical applications Describes several important aspects of turbulence in porous;
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technology from the theory and constraints of basic elements, physics and electronics, up to the level of application-orientated issues. Developed as;
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of these materials are all explored, with applications ranging from sensors, thermoelectrics, catalysis, energy storage, to photovoltaics. Also;
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Silicon Carbide Biotechnology: A Biocompatible Semiconductor for Advanced Biomedical Devices and Applications, Second Edition, provides;
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applications. Two of the six chapters explain the underlying theories, whereas the rest focus on new applications. Porous media transport;
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