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Semiconductor Nanowires I: Growth and Theory

Semiconductor Nanowires: Part A, Number 93 in the Semiconductor and Semimetals series, focuses on semiconductor nanowires. Contains;

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Semiconductor Nanowires

. Semiconductor Nanowires: Materials, Synthesis, Characterization and Applications covers advanced materials for nanowires, the growth and synthesis;

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Crystal Growth

-compound semiconductor quantum dots; supersaturation formation and measurement; the growth mechanisms of electrodeposited nanowires and the growth;

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Nanowires for Energy Applications

Heterojunction Solar Cells, Semiconductor Nanowires for Thermoelectric Generation, Energy Scavenging: Mechanical, Thermoelectric, and Nanowire synthesis;

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Semiconductor Nanowires II: Properties and Applications

Semiconductor Nanowires: Part B, and Volume 94 in the Semiconductor and Semimetals series, focuses on semiconductor nanowires.

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Fundamental Properties of Semiconductor Nanowires

This book covers virtually all aspects of semiconductor nanowires, from growth to related applications, in detail. First, it addresses;

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Semiconductor Nanowires

Semiconductor nanowires were initially discovered in late 90's and since then there has been an explosion in the research of their;

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Nucleation Theory and Growth of Nanostructures

Semiconductor nanostructures such as nanowires are promising building blocks of future nanoelectronic, nanophotonic and nanosensing devices;

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Wide Band Gap Semiconductor Nanowires Fo

to a lack of understanding and control of the growth of nanowires and related heterostructures. Furthermore, dealing with two different but;

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Wide Band Gap Semiconductor Nanowires 1

of nanowires for their use in optical devices, including feasibility and perspectives. It then focuses on the nucleation and growth mechanisms of ZnO;

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Lattice Engineering

bonding, and heterostructure nanowires. Basic knowledge on dislocations in semiconductors and innovative methods to eliminate threading;

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Nanowires

study of the properties, synthesis and application of nanowires. Topics discussed include semiconductor nanowires and heterostructure based gas;

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Quantum Confined Semiconductor Nanostructures

, chemistry, electrical and microelectronic engineering, circuit design, and more, are represented. Topics include: quantum dot theory, growth and;

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Advances in Semiconductor Nanostructures

Advances in Semiconductor Nanostructures: Growth, Characterization, Properties and Applications focuses on the physical aspects;

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Physics and Chemistry of Nano-structured Materials

. Novel experimental tools coupled with new theory have made this possible. Topics covered in this book include nanocrystals, semiconductor;

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Physics and Chemistry of Nano-structured Materials

. Novel experimental tools coupled with new theory have made this possible. Topics covered in this book include nanocrystals, semiconductor;

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Defects in Self-Catalysed III-V Nanowires

This thesis presents an in-depth exploration of imperfections that can be found in self-catalysed III-V semiconductor nanowires. By;

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Nanowires

Zinc Oxide (ZnO) is a metal oxide semiconductor of group II-IV whose nature resides at the borderline between covalent and ionic;

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Advanced Nanoelectronics

materials such as nanowires and nanotubes. Additionally, nanoelectromechanical switches-based mechanical relays and wide bandgap semiconductor-based;

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Metalorganic Vapor Phase Epitaxy (MOVPE)

Systematically discusses the growth method, material properties, and applications for key semiconductor materials MOVPE is a chemical;

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Epitaxy of Semiconductors

crystalline growth of semiconductor heterostructures. Heteroepitaxy is the basis of today's advanced electronic and optoelectronic devices, and it;

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Epitaxy of Semiconductors

crystalline growth of semiconductor heterostructures. Heteroepitaxy is the basis of today's advanced electronic and optoelectronic devices, and it;

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Metal Chalcogenide Nanostructures for Renewable Energy Applications

, nanorods, nanowires, nanobelts, nanoflowers, nanoribbons and more). The properties and synthesis of a class of nanomaterials is essential to;

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Inorganic Nanowires

Characterization addresses the growth, characterization, and properties of nanowires. Author Meyyappan is the director and senior scientist at Ames Center;

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Nanotubes And Nanowires

from well-known semiconductor companies, Nanotubes and Nanowires is an essential source of reference for physicists, chemists, materials;

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Productivity and Cyclicality in Semiconductors: Trends, Implications, and Questions

of growth in semiconductors for the economy as a whole. This volume includes a summary of the symposium proceedings and three major research papers;

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Plasma Processing of Nanomaterials

examples of: Nanoscale etching/deposition of thin films Catalytic growth of carbon nanotubes and semiconductor nanowires;

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