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Phonon thermal transport in silicon-...
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Li, Hai-Peng.
Phonon thermal transport in silicon-based nanomaterials
Record Type:
Electronic resources : Monograph/item
Title/Author:
Phonon thermal transport in silicon-based nanomaterialsby Hai-Peng Li, Rui-Qin Zhang.
Author:
Li, Hai-Peng.
other author:
Zhang, Rui-Qin.
Published:
Singapore :Springer Singapore :2018.
Description:
x, 86 p. :ill. (some col.), digital ;24 cm.
Contained By:
Springer eBooks
Subject:
NanosiliconThermal properties.
Online resource:
https://doi.org/10.1007/978-981-13-2637-0
ISBN:
9789811326370$q(electronic bk.)
Phonon thermal transport in silicon-based nanomaterials
Li, Hai-Peng.
Phonon thermal transport in silicon-based nanomaterials
[electronic resource] /by Hai-Peng Li, Rui-Qin Zhang. - Singapore :Springer Singapore :2018. - x, 86 p. :ill. (some col.), digital ;24 cm. - SpringerBriefs in physics,2191-5423. - SpringerBriefs in physics..
Introduction -- Theoretical and Experimental Methods for Determining the Thermal Conductivity of Nanostructures -- Thermal Stability and Phonon Thermal Transport in Spherical Silicon Nanoclusters -- Phonon Thermal Transport in Silicon Nanowires and Its Surface Effect -- Phonon Thermal Transport in Silicene and Its Defect Effects -- Summary and Concluding Remarks.
In this Brief, authors introduce the advance in theoretical and experimental techniques for determining the thermal conductivity in nanomaterials, and focus on review of their recent theoretical studies on the thermal properties of silicon-based nanomaterials, such as zero-dimensional silicon nanoclusters, one-dimensional silicon nanowires, and graphenelike two-dimensional silicene. The specific subject matters covered include: size effect of thermal stability and phonon thermal transport in spherical silicon nanoclusters, surface effects of phonon thermal transport in silicon nanowires, and defects effects of phonon thermal transport in silicene. The results obtained are supplemented by numerical calculations, presented as tables and figures. The potential applications of these findings in nanoelectrics and thermoelectric energy conversion are also discussed. In this regard, this Brief represents an authoritative, systematic, and detailed description of the current status of phonon thermal transport in silicon-based nanomaterials. This Brief should be a highly valuable reference for young scientists and postgraduate students active in the fields of nanoscale thermal transport and silicon-based nanomaterials.
ISBN: 9789811326370$q(electronic bk.)
Standard No.: 10.1007/978-981-13-2637-0doiSubjects--Topical Terms:
822598
Nanosilicon
--Thermal properties.
LC Class. No.: TA418.9.N35 / L543 2018
Dewey Class. No.: 620.115
Phonon thermal transport in silicon-based nanomaterials
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Introduction -- Theoretical and Experimental Methods for Determining the Thermal Conductivity of Nanostructures -- Thermal Stability and Phonon Thermal Transport in Spherical Silicon Nanoclusters -- Phonon Thermal Transport in Silicon Nanowires and Its Surface Effect -- Phonon Thermal Transport in Silicene and Its Defect Effects -- Summary and Concluding Remarks.
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In this Brief, authors introduce the advance in theoretical and experimental techniques for determining the thermal conductivity in nanomaterials, and focus on review of their recent theoretical studies on the thermal properties of silicon-based nanomaterials, such as zero-dimensional silicon nanoclusters, one-dimensional silicon nanowires, and graphenelike two-dimensional silicene. The specific subject matters covered include: size effect of thermal stability and phonon thermal transport in spherical silicon nanoclusters, surface effects of phonon thermal transport in silicon nanowires, and defects effects of phonon thermal transport in silicene. The results obtained are supplemented by numerical calculations, presented as tables and figures. The potential applications of these findings in nanoelectrics and thermoelectric energy conversion are also discussed. In this regard, this Brief represents an authoritative, systematic, and detailed description of the current status of phonon thermal transport in silicon-based nanomaterials. This Brief should be a highly valuable reference for young scientists and postgraduate students active in the fields of nanoscale thermal transport and silicon-based nanomaterials.
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