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Titlebook: Nanoscale Thermoelectrics; Xiaodong Wang,Zhiming M. Wang Book 2014 Springer International Publishing Switzerland 2014 Carbon Nanotubes, Th

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Electron Transport Engineering by Nanostructures for Efficient Thermoelectrics,onversion efficiency. We focus on the impact of such nanostructures on the electron transport in the host material, and discuss the enhancement of the thermoelectric power factor and thus the figure of merit. Nanostructures embedded in thermoelectric materials can create potential variations at the
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Nano Bulk Thermoelectrics: Concepts, Techniques, and Modeling,for power generation and cooling applications. The quantum size effects have been widely explored in order to shrink the contribution of lattice thermal conductivity of the thermoelectric systems, thereby enhancing the overall figure-of-merit. Modifying the nanoscale level structural features and th
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Control Thermal Conductivity of Semiconductor Nanowires: Phononics Engineering,rsion. Rapid development and exciting innovative breakthroughs in the field over the last decades have occurred in large part due to newly emerged nanoscale materials with reduced thermal conductivity, and newly developed physical concepts, which make it possible to modify the thermal conductivity o
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One-Dimensional Bi-Based Nanostructures for Thermoelectrics,of merit is predicted due to quantum confinement and phonon scattering at interfaces for one-dimensional (1D) nanostructured thermoelectric materials. This chapter addresses recent developments in Bi-based nanostructured thermoelectric materials focused mainly on nanowires, nanotubes, and heterostru
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Thermoelectric Properties of p-Type Skutterudite Nanocomposites,based materials have undergone substantial technological development, making its way to the next generation of thermoelectric devices for power generation and waste heat recovery. Nanostructuring is one approach that could enable significant improvements in thermoelectric performance by reducing the
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