Je-Hyeong Bahk, Ph.D.

Affiliations: 
2010 Electrical & Computer Engineering University of California, Santa Barbara, Santa Barbara, CA, United States 
Area:
Electronics & Photonics
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"Je-Hyeong Bahk"

Parents

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John Edward Bowers grad student 2010 UC Santa Barbara
 (Electron transport in erbium arsenide:indium gallium(aluminum)arsenide metal/semiconductor nanocomposites for thermoelectric power generation.)
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Publications

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Ziabari A, Parsa M, Xuan Y, et al. (2020) Far-field thermal imaging below diffraction limit. Optics Express. 28: 7036-7050
Hossain S, Li T, Yu Y, et al. (2020) Recent advances in printable thermoelectric devices: materials, printing techniques, and applications Rsc Advances. 10: 8421-8434
Choe HS, Prabhakar R, Wehmeyer G, et al. (2019) Ion write micro-thermotics: programing thermal metamaterials at the microscale. Nano Letters
Hsieh YY, Zhang Y, Zhang L, et al. (2019) High thermoelectric power-factor composites based on flexible three-dimensional graphene and polyaniline. Nanoscale
Tew BE, Vempati P, Clinger LE, et al. (2019) High Thermoelectric Power Factor and ZT in TbAs:InGaAs Epitaxial Nanocomposite Material Advanced Electronic Materials. 5: 1900015
Hossain MS, Huynh DH, Jiang L, et al. (2018) Investigating enhanced thermoelectric performance of graphene-based nano-structures. Nanoscale
Xu B, Feng T, Agne MT, et al. (2018) Manipulating Band Structure through Reconstruction of Binary Metal Sulfide towards High-Performance, Eco-Friendly and Cost-Efficient Thermoelectrics in Nanostructured Bi13S18I2. Angewandte Chemie (International Ed. in English)
Ziabari A, Torres P, Vermeersch B, et al. (2018) Full-field thermal imaging of quasiballistic crosstalk reduction in nanoscale devices. Nature Communications. 9: 255
Ghosh S, Margatan K, Ahn CH, et al. (2018) Radiant heat recovery by thermoelectric generators: A theoretical case-study on hot steel casting Energy Conversion and Management. 175: 327-336
Xu B, Agne MT, Feng T, et al. (2017) Nanocomposites from Solution-Synthesized PbTe-BiSbTe Nanoheterostructure with Unity Figure of Merit at Low-Medium Temperatures (500-600 K). Advanced Materials (Deerfield Beach, Fla.)
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