Ki C. Kim, Ph.D.

Affiliations: 
2010 Georgia Institute of Technology, Atlanta, GA 
Area:
Transport Through Nanoporous Materials, Chiral Surface Chemistry
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"Ki Kim"
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David S. Sholl grad student 2010 Georgia Tech
 (Thermodynamics of metal hydrides for hydrogen storage applications using first principles calculations.)
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Publications

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Jung KH, Kim KC. (2020) Insights on Redox Properties of Sumanene Derivatives for High-Performance Organic Cathodes. Acs Applied Materials & Interfaces
Bae H, Lee Y, Lee H, et al. (2020) Physisorption and Chemisorption of SF6 by Transition Metal-Porphyrin Structure Embedded on Graphene Surface with Different Hapticities Journal of the Korean Physical Society. 76: 1001-1004
Jeong GS, Jung KH, Choi S, et al. (2020) Electrochemical Characteristics of Cyanoquinones asOrganic Cathodes for High-Potential Sodium-Ion Batteries Acs Sustainable Chemistry & Engineering. 8: 11328-11336
Jeong GS, Lee DK, Kim KC. (2020) Crucial role of cyanides for high-potential electrochemical reduction reaction Energy Storage Materials. 29: 140-148
Jung KH, Jeong GS, Go CY, et al. (2020) Conjugacy of organic cathode materials for high-potential lithium-ion batteries: Carbonitriles versus quinones Energy Storage Materials. 24: 237-246
Go CY, Jeong GS, Kim KC. (2019) Pyrenetetrone Derivatives Tailored by Nitrogen Dopants for High-Potential Cathodes in Lithium-Ion Batteries. Iscience. 21: 206-216
Jung KH, Jeong GS, Joo JB, et al. (2019) Unveiled understanding on redox properties of fluoranil derivatives for cathodes in sodium-ion batteries. Chemsuschem
Lee DK, Go CY, Kim KC. (2019) Li-Binding Thermodynamics and Redox Properties of BNOPS-Based Organic Compounds for Cathodes in Lithium-Ion Batteries. Acs Applied Materials & Interfaces
Kim KC, Liu T, Jung KH, et al. (2019) Unveiled correlations between electron affinity and solvation in redox potential of quinone-based sodium-ion batteries Energy Storage Materials. 19: 242-250
Kim SY, Yoon TU, Kang JH, et al. (2018) Observation of Olefin/Paraffin Selectivity in Azo Compound and Its Application into a Metal-Organic Framework. Acs Applied Materials & Interfaces
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