Kwang Seob Jeong

Affiliations: 
2008-2013 Chemistry Pennsylvania State University, State College, PA, United States 
 2013-2015 James Franck Institute University of Chicago, Chicago, IL 
 2015- Chemistry Korea University, Seoul, South Korea 
Area:
Colloidal Semiconductor Nanocrystals
Website:
https://kwangsjeong.wixsite.com/ksjlab-koreauniv
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"Kwang Seob Jeong"
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Parents

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John B. Asbury grad student Penn State
 (Assistant Professor at Korea University)
Philippe Guyot-Sionnest post-doc 2013-2015 Chicago
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Publications

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Song H, Lee JH, Eom SY, et al. (2023) Ultranarrow Mid-infrared Quantum Plasmon Resonance of Self-Doped Silver Selenide Nanocrystal. Acs Nano
Bera R, Choi D, Jung YS, et al. (2022) Intraband Transitions of Nanocrystals Transforming from Lead Selenide to Self-doped Silver Selenide Quantum Dots by Cation Exchange. The Journal of Physical Chemistry Letters. 13: 6138-6146
Shikoh AS, Choi GS, Hong S, et al. (2022) High-sensitivity hybrid PbSe/ITZO thin film-based phototransistor detecting from 2100 nm to 2500 nm near-infrared illumination. Nanotechnology
Son J, Choi D, Park M, et al. (2020) Transformation of Colloidal Quantum Dot: From Intraband Transition to Localized Surface Plasmon Resonance. Nano Letters
Kim DK, Choi D, Park M, et al. (2020) Cesium Lead Bromide Quantum Dot Light-Emitting Field-Effect Transistor. Acs Applied Materials & Interfaces
Choi D, Park M, Jeong J, et al. (2019) Multifunctional Self-doped Nanocrystal TFT Sensor. Acs Applied Materials & Interfaces
Choi YC, Kim H, Lee C, et al. (2019) Blue Emission of α-GaN Colloidal Quantum Dots via Zn Doping Chemistry of Materials. 31: 5370-5375
Kim J, Choi D, Jeong KS. (2018) Self-doped colloidal semiconductor nanocrystals with intraband transitions in steady state. Chemical Communications (Cambridge, England)
Jeong J, Yoon B, Kwon YW, et al. (2017) Singly and Doubly Occupied Higher Quantum State in Nanocrystals. Nano Letters
Kim J, Yoon B, Kim J, et al. (2017) High electron mobility of β-HgS colloidal quantum dots with doubly occupied quantum states Rsc Advances. 7: 38166-38170
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