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Dive into the research topics where Kyu-hyoung Lee is active.

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Featured researches published by Kyu-hyoung Lee.


Journal of Electronic Materials | 2013

Enhancing the Thermoelectric Properties of p-Type Bulk Bi-Sb-Te Nanocomposites via Solution-Based Metal Nanoparticle Decoration

Sungwoo Hwang; Sang-Il Kim; Kyunghan Ahn; Jong Wook Roh; Daejin Yang; Sang-mock Lee; Kyu-hyoung Lee

Embedding nanosized particles in bulk thermoelectric materials is expected to lower the lattice thermal conductivity by enhancing the degree of interface phonon scattering, thus improving their thermoelectric figure of merit ZT. We have developed a wet chemical process to fabricate Bi0.5Sb1.5Te3-based thermoelectric nanocomposites which include nanometer-sized metal particles. By simple solution mixing of metal acetate precursors and Bi0.5Sb1.5Te3 powders in ethyl acetate as a medium for homogeneous incorporation, it is possible to apply various types of metal nanoparticles onto the surfaces of the thermoelectric powders. Next, bulk Bi0.5Sb1.5Te3 nanocomposites with homogeneously dispersed metal nanoparticles were fabricated using a spark plasma sintering technique. The lattice thermal conductivities were reduced by increasing the long-wavelength phonon scattering in the presence of metal nanoparticles, while the Seebeck coefficients increased for a few selected metal-decorated nanocomposites, possibly due to the carrier-energy-filtering effect. Finally, the figure of merit ZT was enhanced to 1.4 near room temperature. This approach highlights the feasibility of incorporating various types of nanoparticles into an alloy matrix starting by wet chemical routes, which is an effective means of improving the thermoelectric performance of Bi-Te-based alloys.


Energy Conversion and Management | 2011

Oxide-based thermoelectric power generation module using p-type Ca3Co4O9 and n-type (ZnO)7In2O3 legs

Soon-Mok Choi; Kyu-hyoung Lee; Chang-Hyun Lim; Won-Seon Seo


Journal of Electronic Materials | 2012

Enhancement of Thermoelectric Figure of Merit for Bi0.5Sb1.5Te3 by Metal Nanoparticle Decoration

Kyu-hyoung Lee; Hyun-Sik Kim; Sang-Il Kim; Eun Sung Lee; Sang-mock Lee; Jong-Soo Rhyee; Jae-Yong Jung; Il-Ho Kim; Yifeng Wang; Kunihito Koumoto


Archive | 2010

BULK THERMOELECTRIC MATERIAL AND THERMOELECTRIC DEVICE COMPRISING THE SAME

Kyu-hyoung Lee; Sang-mock Lee; Eun Sung Lee; Ilho Kim


Archive | 2010

THERMOELECTRIC NANO-COMPOSITE, AND THERMOELECTRIC MODULE AND THERMOELECTRIC APPARATUS INCLUDING THE THERMOELECTRIC NANO-COMPOSITE

Hyun-Sik Kim; Kyu-hyoung Lee; Sang-mock Lee; Eun Sung Lee; Sang-Soo Jee; Xiangshu Li


Journal of Electronic Materials | 2013

Enhancement of the Thermoelectric Performance of Bi 0.4 Sb 1.6 Te 3 Alloys by In and Ga Doping

Kyu-hyoung Lee; Sungwoo Hwang; Byungki Ryu; Kyunghan Ahn; Jongwook Roh; Daejin Yang; Sang-mock Lee; Hyun-Sik Kim; Sang-Il Kim


Archive | 2012

Thermoelectric material including nano-inclusions, thermoelectric module and thermoelectric apparatus including the same

Sang-Il Kim; Kyu-hyoung Lee


Archive | 2011

Thermoelectric material including coating layers, method of preparing the thermoelectric material, and thermoelectric device including the thermoelectric material

Sang-Il Kim; Kyu-hyoung Lee; Sang-mock Lee


Archive | 2010

THERMOELECTRIC COMPOSITE, AND THERMOELECTRIC DEVICE AND THERMOELECTRIC MODULE INCLUDING THE THERMOELECTRIC COMPOSITE

Kyu-hyoung Lee; Eun Sung Lee; Sang-mock Lee; Hyun-Sik Kim


Archive | 2010

NANOCOMPOSITE THERMOELECTRIC MATERIAL, AND THERMOELECTRIC DEVICE AND THERMOELECTRIC MODULE INCLUDING THE SAME

Kyu-hyoung Lee; Hyun-Sik Kim; Sang-mock Lee; Eun Sung Lee; Sang-Soo Jee

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