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Carbon nanotubes enhanced Seebeck coefficient and power factor of rutile TiO2
Journal article   Peer reviewed

Carbon nanotubes enhanced Seebeck coefficient and power factor of rutile TiO2

Yao-Cheng Lai, Hsin-Jung Tsai, Chia-I. Hung, Hiroyuki Fujishiro, Tomoyuki Naito and Wen-Kuang Hsu
Physical Chemistry Chemical Physics, Vol.17(12), pp.8120-8124
28/03/2015
Appears in  keyword about Physics

Abstract

The Seebeck coefficient, according to Ioffe's approximation, is inversely proportional to carrier density and decreases with doping. Herein, we find that the incorporation of multi-walled carbon nanotubes into rutile TiO 2 improves the electrical conductivity and Seebeck coefficient at a low filling fraction of tubes; moreover, the former was due to the lengthening of the mean free path and doping modified carrier mobility for the latter. Tube-oxide mixing also causes significant phonon drag at the interfaces and the reduced thermal conductivity was verified by the promoted figure of merit. This journal is

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