TY - JOUR
T1 - Study on the electrical and thermal conductivity of ordered mesoporous TiO2 thin film incorporated with Pt nanoparticles
AU - Ha, Tae Jung
AU - Choi, Yong June
AU - Jung, Sin Young
AU - Seo, Won Seon
AU - Lim, Young Soo
AU - Shin, Sangwoo
AU - Cho, Hyung Hee
AU - Park, Hyung Ho
PY - 2011/7
Y1 - 2011/7
N2 - Ordered mesoporous TiO2 films with incorporated Pt nanoparticles were prepared using titanium tetraisopropoxide, hexachloroplatinic acid hexahydrate, and Pluronic P-123 as a titania precursor, a Pt precursor, and a structure-directing agent, respectively. Pt nanoparticles were introduced to enhance the electrical properties of the mesoporous films, which have excellent thermal insulation properties. We confirmed that the synthesized composite films with Pt nanoparticles had an ordered pore structure with anatase phase TiO 2 by both small-angle and wide-angle Xray diffraction analyses. Although the porosity of the composite film decreased from 37.6 to 29.3% when Pt nanoparticles were included, the conductivity ratio (σ=κ.) of the film increased greatly, up to approximately 1370 KVv-2, due to the greater increase in electrical conductivity than thermal conductivity. Based on our results, we conclude that by incorporating Pt nanoparticles into ordered mesoporous TiO2 film, the thermoelectric properties of the mesoporous films can be improved.
AB - Ordered mesoporous TiO2 films with incorporated Pt nanoparticles were prepared using titanium tetraisopropoxide, hexachloroplatinic acid hexahydrate, and Pluronic P-123 as a titania precursor, a Pt precursor, and a structure-directing agent, respectively. Pt nanoparticles were introduced to enhance the electrical properties of the mesoporous films, which have excellent thermal insulation properties. We confirmed that the synthesized composite films with Pt nanoparticles had an ordered pore structure with anatase phase TiO 2 by both small-angle and wide-angle Xray diffraction analyses. Although the porosity of the composite film decreased from 37.6 to 29.3% when Pt nanoparticles were included, the conductivity ratio (σ=κ.) of the film increased greatly, up to approximately 1370 KVv-2, due to the greater increase in electrical conductivity than thermal conductivity. Based on our results, we conclude that by incorporating Pt nanoparticles into ordered mesoporous TiO2 film, the thermoelectric properties of the mesoporous films can be improved.
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U2 - 10.1143/JJAP.50.075001
DO - 10.1143/JJAP.50.075001
M3 - Article
AN - SCOPUS:79960684351
SN - 0021-4922
VL - 50
JO - Japanese journal of applied physics
JF - Japanese journal of applied physics
IS - 7 PART 1
M1 - 075001
ER -