Keehoon Kang

Affiliations: 
Seoul National University, Seoul, South Korea 
Area:
Organic semiconductors, Metal-halide perovskties
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"Keehoon Kang"
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Henning Sirringhaus grad student 2012-2017 Cambridge (Chemistry Tree)
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Publications

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Jang J, Kim JK, Shin J, et al. (2022) Reduced dopant-induced scattering in remote charge-transfer-doped MoS field-effect transistors. Science Advances. 8: eabn3181
Baek KY, Lee W, Lee J, et al. (2022) Mechanochemistry-driven engineering of 0D/3D heterostructure for designing highly luminescent Cs-Pb-Br perovskites. Nature Communications. 13: 4263
Youn S, Kim J, Moon H, et al. (2022) Enhanced Thermoelectric Power Factor in Carrier-Type-Controlled Platinum Diselenide Nanosheets by Molecular Charge-Transfer Doping. Small (Weinheim An Der Bergstrasse, Germany). e2200818
Kim J, Cho K, Pak J, et al. (2022) Channel-Length-Modulated Avalanche Multiplication in Ambipolar WSe Field-Effect Transistors. Acs Nano
Kim JK, Cho K, Jang J, et al. (2021) Molecular Dopant-Dependent Charge Transport in Surface-Charge-Transfer-Doped Tungsten Diselenide Field Effect Transistors. Advanced Materials (Deerfield Beach, Fla.). e2101598
Kim Y, Chung S, Cho K, et al. (2020) Enhanced Charge Injection Properties of Organic Field Effect Transistor by Molecular Implantation Doping. Advanced Materials (Deerfield Beach, Fla.). 32: e2003126
Kim Y, Broch K, Lee W, et al. (2020) Highly Stable Contact Doping in Organic Field Effect Transistors by Dopant-Blockade Method. Advanced Functional Materials. 30: 2000058
Kim Y, Chung S, Cho K, et al. (2019) Enhanced Charge Injection Properties of Organic Field-Effect Transistor by Molecular Implantation Doping. Advanced Materials (Deerfield Beach, Fla.). e1806697
Cho K, Pak J, Kim JK, et al. (2018) Contact-Engineered Electrical Properties of MoSField-Effect Transistors via Selectively Deposited Thiol-Molecules. Advanced Materials (Deerfield Beach, Fla.). e1705540
Kang K, Watanabe S, Broch K, et al. (2016) 2D coherent charge transport in highly ordered conducting polymers doped by solid state diffusion. Nature Materials
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