Quantum Dots, Nanoparticles and Nanowires: Volume 789

Quantum Dots, Nanoparticles and Nanowires: Volume 789
Title Quantum Dots, Nanoparticles and Nanowires: Volume 789 PDF eBook
Author P. Guyot-Sionnest
Publisher
Pages 456
Release 2004-05-04
Genre Science
ISBN

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Nanostructures of semiconductors and metals show novel optical and transport properties, and offer the perspective of designing materials properties with unprecedented flexibility and control. This has motivated research in the synthesis and characterization of new materials. This 2004 book brings together scientists with various levels of expertise in the growth, characterization and applications of inorganic nanostructures, such as quantum dots, nanowires and nanorods, to discuss and share developments in the field. Reports focus on techniques to prepare and characterize novel materials, investigations of novel optical and electronic properties, and novel applications, such as those that are biologically inspired. Topics include: synthesis and characterization of semiconductor quantum dots, nanoparticles and nanowires using wet chemistry and molecular beam approaches; synthesis, characterization and novel properties of metallic nanostructures; optical properties of neutral and charged excitons and exciton complexes in self-assembled quantum dots; nanoscale devices and sensors based on nanostructures and their properties; and design and characterization of quantum dot-bioconjugates and their use in assay developments.

Materials Research Society Symposium Proceedings. Volume 789. Held in Boston, Massachusetts, December 1-5 2003. Quantum Dots Nanoparticles and Nanowires

Materials Research Society Symposium Proceedings. Volume 789. Held in Boston, Massachusetts, December 1-5 2003. Quantum Dots Nanoparticles and Nanowires
Title Materials Research Society Symposium Proceedings. Volume 789. Held in Boston, Massachusetts, December 1-5 2003. Quantum Dots Nanoparticles and Nanowires PDF eBook
Author
Publisher
Pages 421
Release 2004
Genre
ISBN

Download Materials Research Society Symposium Proceedings. Volume 789. Held in Boston, Massachusetts, December 1-5 2003. Quantum Dots Nanoparticles and Nanowires Book in PDF, Epub and Kindle

CdSe(sub x)Te(sub 1-x) nanoparticles (with different stoichiometry ratio x) dispersed in silicon dioxide films have been grown by magnetron sputtering technique followed by thermal annealing. Effect of Thermal annealing conditions on the structural, compositional, optical and electronic properties of nanoparticles has been studied Using GAXRD, XPS, TEM, and spectroscopic ellipsometry techniques A structural transformation in the nanoparticle core mediated purely by surface layer effects in the case of CdTe and a spontaneous self-organization of nanoparticles into nanorods in the case of CdSe via fractal growth has been observed. Preliminary observations from the ellipsometry measurements carried out on some of these nanoparticle films shows a blue shift of absorption edge.

Handbook of Nanophysics

Handbook of Nanophysics
Title Handbook of Nanophysics PDF eBook
Author Klaus D. Sattler
Publisher CRC Press
Pages 718
Release 2016-04-19
Genre Science
ISBN 1420075454

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In the 1990s, nanoparticles and quantum dots began to be used in optical, electronic, and biological applications. Now they are being studied for use in solid-state quantum computation, tumor imaging, and photovoltaics. Handbook of Nanophysics: Nanoparticles and Quantum Dots focuses on the fundamental physics of these nanoscale materials and struct

Nanoparticles and Nanowire Building Blocks - Synthesis, Processing, Characterization and Theory: Volume 818

Nanoparticles and Nanowire Building Blocks - Synthesis, Processing, Characterization and Theory: Volume 818
Title Nanoparticles and Nanowire Building Blocks - Synthesis, Processing, Characterization and Theory: Volume 818 PDF eBook
Author Materials Research Society. Meeting
Publisher
Pages 448
Release 2004-10-29
Genre Technology & Engineering
ISBN

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Increasingly, novel optical and magnetic properties of nanoparticles and nanowires are finding rich opportunities in electronic, biological tagging, separation and sensing. This volume brings together a large and diverse group of international researchers to focus on the synthesis, processing, characterization and modeling of nanoparticles and nanowires and their potential use as 'nanoscale building blocks' for electronic, optical and biological applications. The compilation of papers reflects the drive to harness the understanding of isolated nanostructures, translating these insights into opportunities of engineered materials and devices. In addition to studies of individual nanostructures, the volume also explores how new collective properties emerge as nanoscale building blocks are assembled to produce extended structures. Experimental, theoretical and computational perspectives are offered. Topics include: magnetic nanostructures; metallic nanoparticles; metallic nanowires; magnetic and metallic nanostructures; semiconductor quantum dots; semiconductor dots and wires; nanobiological materials; and group-IV nanoparticles.

Handbook of Nanophysics

Handbook of Nanophysics
Title Handbook of Nanophysics PDF eBook
Author Klaus D. Sattler
Publisher CRC Press
Pages 716
Release 2010-09-17
Genre Science
ISBN 9781420075441

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In the 1990s, nanoparticles and quantum dots began to be used in optical, electronic, and biological applications. Now they are being studied for use in solid-state quantum computation, tumor imaging, and photovoltaics. Handbook of Nanophysics: Nanoparticles and Quantum Dots focuses on the fundamental physics of these nanoscale materials and structures. Each peer-reviewed chapter contains a broad-based introduction and enhances understanding of the state-of-the-art scientific content through fundamental equations and illustrations, some in color. This volume provides an overview of the major categories of nanoparticles, including amorphous, magnetic, ferroelectric, and zinc oxide nanoparticles; helium nanodroplets; and silicon, tetrapod-shaped semiconductor, magnetic ion-doped semiconductor, and natural polysaccharide nanocrystals. It also describes their properties and interactions. In the group of chapters on nanofluids, the expert contributors discuss the stability of nanodispersions, liquid slip at the molecular scale, thermophysical properties, and heat transfer. They go on to examine the theory, self-assembly, and teleportation of quantum dots. Nanophysics brings together multiple disciplines to determine the structural, electronic, optical, and thermal behavior of nanomaterials; electrical and thermal conductivity; the forces between nanoscale objects; and the transition between classical and quantum behavior. Facilitating communication across many disciplines, this landmark publication encourages scientists with disparate interests to collaborate on interdisciplinary projects and incorporate the theory and methodology of other areas into their work.

Quantum Dots and Nanowires

Quantum Dots and Nanowires
Title Quantum Dots and Nanowires PDF eBook
Author Supriyo Bandyopadhyay
Publisher
Pages 458
Release 2003
Genre Science
ISBN

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Quantum Dots and Nanowires provides coverage on various emerging aspects of quantum dots and nanowires. This book covers recent advances in physical and chemical synthetic approaches, processing and fabrication of semiconductor quantum-dot arrays, superlattices, self-assemblies, nanowires, nanotubes and nanobelts, computational modeling approaches, spectroscopic characterization, their unique electrical, optical, magnetic and physical properties associated with size effect, transport phenomena, quantum computing, and other potential applications.

Semiconductor Nanocrystal Quantum Dots

Semiconductor Nanocrystal Quantum Dots
Title Semiconductor Nanocrystal Quantum Dots PDF eBook
Author Andrey Rogach
Publisher Springer Science & Business Media
Pages 374
Release 2008-09-02
Genre Technology & Engineering
ISBN 3211752374

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This is the first book to specifically focus on semiconductor nanocrystals, and address their synthesis and assembly, optical properties and spectroscopy, and potential areas of nanocrystal-based devices. The enormous potential of nanoscience to impact on industrial output is now clear. Over the next two decades, much of the science will transfer into new products and processes. One emerging area where this challenge will be very successfully met is the field of semiconductor nanocrystals. Also known as colloidal quantum dots, their unique properties have attracted much attention in the last twenty years.