Large reduction in thermal conductivity for Ge quantum dots embedded in SiO2 system
Author:
Publisher
AIP Publishing
Subject
Physics and Astronomy (miscellaneous)
Link
http://aip.scitation.org/doi/pdf/10.1063/1.4773204
Reference34 articles.
1. Thermal Conductivity Reduction and Thermoelectric Figure of Merit Increase by Embedding Nanoparticles in Crystalline Semiconductors
2. Controlling thermal conductance through quantum dot roughening at interfaces
3. Precise control of thermal conductivity at the nanoscale through individual phonon-scattering barriers
4. Theory of enhancement of thermoelectric properties of materials with nanoinclusions
5. Demonstration of electron filtering to increase the Seebeck coefficient inIn0.53Ga0.47As∕In0.53Ga0.28Al0.19Assuperlattices
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1. Improved thermoelectric property of B-doped Si/Ge multilayered quantum dot films prepared by RF magnetron sputtering;Japanese Journal of Applied Physics;2017-11-13
2. Atomistic simulation of the thermal conductivity in amorphous SiO 2 matrix/Ge nanocrystal composites;Physica E: Low-dimensional Systems and Nanostructures;2017-04
3. Large reduction in thermal conductivity for SiGe alloy nanowire wrapped with a Ge nanoparticle-embedded SiO2shell;Nanotechnology;2016-06-16
4. Thermal conductivity of argon-SiO2cryocrystal nanocomposite;Low Temperature Physics;2016-04
5. Using Activated Transport in Parallel Nanowires for Energy Harvesting and Hot-Spot Cooling;Physical Review Applied;2015-05-08
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