K
Kunihito Koumoto
Researcher at King Abdulaziz University
Publications - 433
Citations - 16850
Kunihito Koumoto is an academic researcher from King Abdulaziz University. The author has contributed to research in topics: Thermoelectric effect & Seebeck coefficient. The author has an hindex of 66, co-authored 422 publications receiving 15467 citations. Previous affiliations of Kunihito Koumoto include Nagoya University & Toyota.
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Giant thermoelectric Seebeck coefficient of a two-dimensional electron gas in SrTiO3
Hiromichi Ohta,Hiromichi Ohta,Sung Wng Kim,Yoriko Mune,Teruyasu Mizoguchi,Kenji Nomura,Shingo Ohta,Takashi Nomura,Yuki Nakanishi,Yuichi Ikuhara,Masahiro Hirano,Hideo Hosono,Kunihito Koumoto +12 more
TL;DR: The present approach using a 2DEG provides a new route to realize practical thermoelectric materials without the use of toxic heavy elements and enhances the Seebeck coefficient without reducing the electrical conductivity.
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Flexible n-type thermoelectric materials by organic intercalation of layered transition metal dichalcogenide TiS2
Chunlei Wan,Xiaokun Gu,Feng Dang,Tomohiro Itoh,Yifeng Wang,Hitoshi Sasaki,Mami Kondo,Kenji Koga,Kazuhisa Yabuki,G. Jeffrey Snyder,Ronggui Yang,Kunihito Koumoto +11 more
TL;DR: This work presents an approach to synthesize n-type flexible thermoelectric materials through a facile electrochemical intercalation method, fabricating a hybrid superlattice of alternating inorganic TiS2 monolayers and organic cations.
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Low-Temperature Fabrication of Light-Emitting Zinc Oxide Micropatterns Using Self-Assembled Monolayers
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High-temperature carrier transport and thermoelectric properties of heavily La- or Nb-doped SrTiO3 single crystals
TL;DR: In this paper, the authors measured the thermal properties of heavy La- or Nb-doped SrTiO3 (STO) bulk single crystals at high temperatures to clarify the influence of doping upon the thermoelectric performance of STO.
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Oxide Thermoelectric Materials: A Nanostructuring Approach
TL;DR: In this paper, a review article summarizes previous and ongoing studies on thermoelectric oxide-based materials and further discusses nanostructuring approaches for both SrTiO3 and CaMnO3 materials.