Nanoscale Thermoelectrics
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Nanoscale Thermoelectrics
Author | : Xiaodong Wang,Zhiming M. Wang |
Publsiher | : Springer Science & Business Media |
Total Pages | : 519 |
Release | : 2013-11-18 |
Genre | : Technology & Engineering |
ISBN | : 9783319020129 |
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For the efficient utilization of energy resources and the minimization of environmental damage, thermoelectric materials can play an important role by converting waste heat into electricity directly. Nanostructured thermoelectric materials have received much attention recently due to the potential for enhanced properties associated with size effects and quantum confinement. Nanoscale Thermoelectrics describes the theory underlying these phenomena, as well as various thermoelectric materials and nanostructures such as carbon nanotubes, SiGe nanowires, and graphene nanoribbons. Chapters written by leading scientists throughout the world are intended to create a fundamental bridge between thermoelectrics and nanotechnology, and to stimulate readers' interest in developing new types of thermoelectric materials and devices for power generation and other applications. Nanoscale Thermoelectrics is both a comprehensive introduction to the field and a guide to further research, and can be recommended for Physics, Electrical Engineering, and Materials Science departments.
Investigations on Joule heating applications by multiphysical continuum simulations in nanoscale systems
Author | : Feuchter, Manuel Klaus Ludwig |
Publsiher | : KIT Scientific Publishing |
Total Pages | : 260 |
Release | : 2014-10-01 |
Genre | : Electronic Book |
ISBN | : 9783731502616 |
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Thermoelectric Nanomaterials
Author | : Kunihito Koumoto,Takao Mori |
Publsiher | : Springer Science & Business Media |
Total Pages | : 387 |
Release | : 2013-07-20 |
Genre | : Technology & Engineering |
ISBN | : 9783642375378 |
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Presently, there is an intense race throughout the world to develop good enough thermoelectric materials which can be used in wide scale applications. This book focuses comprehensively on very recent up-to-date breakthroughs in thermoelectrics utilizing nanomaterials and methods based in nanoscience. Importantly, it provides the readers with methodology and concepts utilizing atomic scale and nanoscale materials design (such as superlattice structuring, atomic network structuring and properties control, electron correlation design, low dimensionality, nanostructuring, etc.). Furthermore, also indicates the applications of thermoelectrics expected for the large emerging energy market. This book has a wide appeal and application value for anyone being interested in state-of-the-art thermoelectrics and/or actual viable applications in nanotechnology.
Materials Preparation and Characterization in Thermoelectrics
Author | : David Michael Rowe |
Publsiher | : CRC Press |
Total Pages | : 555 |
Release | : 2017-12-19 |
Genre | : Technology & Engineering |
ISBN | : 9781351832793 |
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This book includes updated theoretical considerations which provide an insight into avenues of research most likely to result in further improvements in material performance. It details the latest techniques for the preparation of thermoelectric materials employed in energy harvesting, together with advances in the thermoelectric characterisation of nanoscale material. The book reviews the use of neutron beams to investigate phonons, whose behaviour govern the lattice thermal conductivity and includes a chapter on patents.
Thermoelectrics and its Energy Harvesting 2 Volume Set
Author | : David Michael Rowe |
Publsiher | : CRC Press |
Total Pages | : 1120 |
Release | : 2018-10-03 |
Genre | : Technology & Engineering |
ISBN | : 9781439840429 |
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Comprising two volumes, Thermoelectrics and Its Energy Harvesting reviews the vast improvements in technology and application of thermoelectric energy with a specific intention to reduce and reuse waste heat and improve novel techniques for the efficient acquisition and use of energy.Materials, Preparation, and Characterization in Thermoelectrics i
Thermoelectrics Handbook
Author | : D.M. Rowe |
Publsiher | : CRC Press |
Total Pages | : 1008 |
Release | : 2018-10-03 |
Genre | : Technology & Engineering |
ISBN | : 9781420038903 |
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Ten years ago, D.M. Rowe introduced the bestselling CRC Handbook of Thermoelectrics to wide acclaim. Since then, increasing environmental concerns, desire for long-life electrical power sources, and continued progress in miniaturization of electronics has led to a substantial increase in research activity involving thermoelectrics. Reflecting the latest trends and developments, the Thermoelectrics Handbook: Macro to Nano is an extension of the earlier work and covers the entire range of thermoelectrics disciplines. Serving as a convenient reference as well as a thorough introduction to thermoelectrics, this book includes contributions from 99 leading authorities from around the world. Its coverage spans from general principles and theoretical concepts to material preparation and measurements; thermoelectric materials; thermoelements, modules, and devices; and thermoelectric systems and applications. Reflecting the enormous impact of nanotechnology on the field-as the thermoelectric properties of nanostructured materials far surpass the performance of conventional materials-each section progresses systematically from macro-scale to micro/nano-scale topics. In addition, the book contains an appendix listing major manufacturers and suppliers of thermoelectric modules. There is no longer any need to spend hours plodding through the journal literature for information. The Thermoelectrics Handbook: Macro to Nano offers a timely, comprehensive treatment of all areas of thermoelectrics in a single, unified reference.
Thermodynamics in the Quantum Regime
Author | : Felix Binder,Luis A. Correa,Christian Gogolin,Janet Anders,Gerardo Adesso |
Publsiher | : Springer |
Total Pages | : 998 |
Release | : 2019-04-01 |
Genre | : Science |
ISBN | : 9783319990460 |
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Quantum Thermodynamics is a novel research field which explores the emergence of thermodynamics from quantum theory and addresses thermodynamic phenomena which appear in finite-size, non-equilibrium and finite-time contexts. Blending together elements from open quantum systems, statistical mechanics, quantum many-body physics, and quantum information theory, it pinpoints thermodynamic advantages and barriers emerging from genuinely quantum properties such as quantum coherence and correlations. Owing to recent experimental efforts, the field is moving quickly towards practical applications, such as nano-scale heat devices, or thermodynamically optimised protocols for emergent quantum technologies. Starting from the basics, the present volume reviews some of the most recent developments, as well as some of the most important open problems in quantum thermodynamics. The self-contained chapters provide concise and topical introductions to researchers who are new to the field. Experts will find them useful as a reference for the current state-of-the-art. In six sections the book covers topics such as quantum heat engines and refrigerators, fluctuation theorems, the emergence of thermodynamic equilibrium, thermodynamics of strongly coupled systems, as well as various information theoretic approaches including Landauer's principle and thermal operations. It concludes with a section dedicated to recent quantum thermodynamics experiments and experimental prospects on a variety of platforms ranging from cold atoms to photonic systems, and NV centres.
Transport Phenomena in Thermoelectric and Ferromagnetic Nanostructures
Author | : Johannes Kimling |
Publsiher | : Cuvillier Verlag |
Total Pages | : 154 |
Release | : 2013-09-23 |
Genre | : Science |
ISBN | : 9783736945197 |
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Research on transport phenomena in a variety of materials has played a decisive role in the development of solidstate physics and has led to important applications of functional materials, e.g. for the conversion and storage of energy or in the fi eld of storage and processing of data. This thesis deals with transport phenomena in nanoscale systems. The Seebeck effect is explored in Bi2Te3 nanowires, the anisotropic magnetothermal resistance effect in Ni nanowires, and the giant magnetothermal resistance effect in Co/Cu multilayers.