Kenta Nakayashiki, Ph.D.

Affiliations: 
2007 Georgia Institute of Technology, Atlanta, GA 
Area:
Electronics and Electrical Engineering
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"Kenta Nakayashiki"

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Ajeet Rohatgi grad student 2007 Georgia Tech
 (Understanding of defect passivation and its effect on multicrystalline silicon solar cell performance.)
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Publications

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Nakayashiki K, Hofstetter J, Morishige AE, et al. (2016) Engineering Solutions and Root-Cause Analysis for Light-Induced Degradation in p-Type Multicrystalline Silicon PERC Modules Ieee Journal of Photovoltaics. 6: 860-868
Das A, Kim DS, Nakayashiki K, et al. (2010) Boron diffusion with boric acid for high efficiency silicon solar cells Journal of the Electrochemical Society. 157
Kleekajai S, Wen L, Peng C, et al. (2009) Infrared study of the concentration of H introduced into Si by the postdeposition annealing of a SiNx coating Journal of Applied Physics. 106
Meemongkolkiat V, Nakayashiki K, Dong SK, et al. (2007) Investigation of modified screen-printing AL pastes for local back surface field formation Conference Record of the 2006 Ieee 4th World Conference On Photovoltaic Energy Conversion, Wcpec-4. 2: 1338-1341
Meemongkolkiat V, Nakayashiki K, Kim DS, et al. (2006) Factors limiting the formation of uniform and thick aluminum-back-surface field and its potential Journal of the Electrochemical Society. 153
Hilali MM, Nakayashiki K, Khadilkar C, et al. (2006) Effect of Ag particle size in thick-film Ag paste on the electrical and physical properties of screen printed contacts and silicon solar cells Journal of the Electrochemical Society. 153
Kleekajai S, Jiang F, Stavola M, et al. (2006) Concentration and penetration depth of H introduced into crystalline Si by hydrogenation methods used to fabricate solar cells Journal of Applied Physics. 100
Kim DS, Yelundur V, Nakayashiki K, et al. (2006) Ribbon Si solar cells with efficiencies over 18% by hydrogenation of defects Solar Energy Materials and Solar Cells. 90: 1227-1240
Nakayashiki K, Rousaville B, Yelundur V, et al. (2006) Fabrication and analysis of high-efficiency String Ribbon Si solar cells Solid-State Electronics. 50: 1406-1412
Kim DS, Yelundur V, Nakayashiki K, et al. (2006) Ribbon Si solar cells with efficiencies over 18% by hydrogenation of defects Solar Energy Materials and Solar Cells. 90: 1227-1240
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