Electron Spin Dependent Properties Of Semiconductor Nanocrystals And Endohedral Fullerenes PDF Download

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Microscopic Analysis of Spin Coherences in Semiconductor Nanostructures

Microscopic Analysis of Spin Coherences in Semiconductor Nanostructures
Author:
Publisher:
Total Pages: 4
Release: 2004
Genre:
ISBN:

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The authors have developed microscopic theory for analysis of spin excitations in semiconductor nanocrystals and endohedral fullerenes based on atomistic electronic structure calculations. They have made calculations of shape and size dependence of electronic and excitonic g-factors; examined magnetic properties of Mn:ZnS dilute magnetic semiconductor nanocrystals; made atomistic calculation of coherent spin transfer between nanocrystals linked by organic molecules; calculated structural, magnetic, and transport properties of a high-spin endohedral metallofullerene GdC82; and calculated hyperfine coupling constants for endohedral nitrogen atoms in fullerenes of variable size. The authors make comparisons with experimental data, finding good agreement in all cases validating the microscopic methods developed in this project.


Semiconductor and Metal Nanocrystals

Semiconductor and Metal Nanocrystals
Author: Victor I. Klimov
Publisher: CRC Press
Total Pages: 505
Release: 2003-11-07
Genre: Science
ISBN: 0203913264

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The vast technological potential of nanocrystalline materials, as well as current intense interest in the physics and chemistry of nanoscale phenomena, has led to explosive growth in research on semiconductor nanocrystals, also known as nanocrystal quantum dots, and metal nanoparticles. Semiconductor and Metal Nanocrystals addresses current topics impacting the field including synthesis and assembly of nanocrystals, theory and spectroscopy of interband and intraband optical transitions, single-nanocrystal optical and tunneling spectroscopies, electrical transport in nanocrystal assemblies, and physical and engineering aspects of nanocrystal-based devices. Written by experts who have contributed pioneering research, this reference comprises key advances in the field of semiconductor nanocrystal quantum dots and metal nanoparticles over the past several years. Focusing specifically on nanocrystals generated through chemical techniques, Semiconductor and Metal Nanocrystals Merges investigative frontiers in physics, chemistry, and engineering Documents advances in nanocrystal synthesis and assembly Explores the theory of electronic excitations in nanoscale particles Presents comprehensive information on optical spectroscopy of interband and intraband optical transitions Reviews data on single-nanocrystal optical and tunneling spectroscopies Weighs controversies related to carrier relaxation dynamics in ultrasmall nanoparticles Discusses charge carrier transport in nanocrystal assemblies Provides examples of lasing and photovoltaic nanocrystal-based devices Semiconductor and Metal Nanocrystals is a must read for scientists, engineers, and upper-level undergraduate and graduate students interested in the physics and chemistry of nanoscale semiconductor and metal particles, as well as general nanoscale science.


Chemical Abstracts

Chemical Abstracts
Author:
Publisher:
Total Pages: 2626
Release: 2002
Genre: Chemistry
ISBN:

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Guide Through the Nanocarbon Jungle

Guide Through the Nanocarbon Jungle
Author: David Tománek
Publisher: Iop Concise Physics
Total Pages: 106
Release: 2014-02
Genre:
ISBN: 9781643278797

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Buckyball, onion, nanobud, peapod - what are these buzzwords about? was a question posed to me many times over the last decade or two. This concise glossary is designed to provide the first answer to these and similar questions, and be a guide through th


Organic Solar Cells

Organic Solar Cells
Author: Wallace C.H. Choy
Publisher: Springer Science & Business Media
Total Pages: 268
Release: 2012-11-19
Genre: Technology & Engineering
ISBN: 1447148231

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Organic solar cells have emerged as new promising photovoltaic devices due to their potential applications in large area, printable and flexible solar panels. Organic Solar Cells: Materials and Device Physics offers an updated review on the topics covering the synthesis, properties and applications of new materials for various critical roles in devices from electrodes, interface and carrier transport materials, to the active layer composed of donors and acceptors. Addressing the important device physics issues of carrier and exciton dynamics and interface stability and novel light trapping structures, the potential for hybrid organic solar cells to provide high efficiency solar cells is examined and discussed in detail. Specific chapters covers key areas including: Latest research and designs for highly effective polymer donors/acceptors and interface materials Synthesis and application of highly transparent and conductive graphene Exciton and charge dynamics for in-depth understanding of the mechanism underlying organic solar cells. New potentials and emerging functionalities of plasmonic effects in OSCs Interface Degradation Mechanisms in organic photovoltaics improving the entire device lifetime Device architecture and operation mechanism of organic/ inorganic hybrid solar cells for next generation of high performance photovoltaics This reference can be practically and theoretically applied by senior undergraduates, postgraduates, engineers, scientists, researchers, and project managers with some fundamental knowledge in organic and inorganic semiconductor materials or devices.


Principles of Pulse Electron Paramagnetic Resonance

Principles of Pulse Electron Paramagnetic Resonance
Author: Arthur Schweiger
Publisher:
Total Pages: 608
Release: 2001
Genre: Medical
ISBN: 9780198506348

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Pulse EPR (electron paramagnetic resonance) is one of the newest and most widely used techniques for examining the structure, function and dynamics of biological systems and synthetic materials. Until now, however, there has been no single text dedicated to this growing area of research. This text addresses the need for a comprehensive overview of Pulse EPR. The book covers the basic theory of pulse EPR, as well as a description and critical evaluation of the existing and emerging methods needed for selecting and conducting the proper experiment and analyzing the results. This is an indispensable reference for all scientists who need a thorough grounding in this increasingly popular field of spectroscopy.


Electronic Structure of Quantum Confined Atoms and Molecules

Electronic Structure of Quantum Confined Atoms and Molecules
Author: K.D. Sen
Publisher: Springer
Total Pages: 260
Release: 2014-09-19
Genre: Science
ISBN: 3319099825

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The present volume is a collection of review articles highlighting the fundamental advances made in this area by the internationally acclaimed research groups , most of them being pioneers themselves and coming together for the first time.


Physics of Low Dimensional Systems

Physics of Low Dimensional Systems
Author: José L. Morán-López
Publisher: Springer Science & Business Media
Total Pages: 466
Release: 2001-05-31
Genre: Gardening
ISBN: 0306465663

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This book contains contributions on some of the most important and current topics on the physics of low dimensional systems. The main emphasis is on the magnetic properties of surfaces, thin films, and atomic clusters. State-of-the-art techniques are discussed in detail. Techniques for the production and measurement of nanostructures are discussed, and pioneering contributions on the effect on health of these particles are presented. Important studies on semiconductor nanostructures are addressed as well as aerosol systems.