Chunjoong Kim

Affiliations: 
2011-2015 Chemistry University of Illinois at Chicago, Chicago, IL, United States 
 2015- Chemistry Chungnam National University, Korea 
Area:
energy materials
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"Chunjoong Kim"
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Publications

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Yoo M, Kang E, Ha H, et al. (2022) Interspersing CeO Clusters to the Pt-TiO Interfaces for Catalytic Promotion of TiO-Supported Pt Nanoparticles. The Journal of Physical Chemistry Letters. 1719-1725
Harchol A, Reuveni G, Ri V, et al. (2020) Endogenous Dynamic Nuclear Polarization for Sensitivity Enhancement in Solid-State NMR of Electrode Materials. The Journal of Physical Chemistry. C, Nanomaterials and Interfaces. 124: 7082-7090
Yoo M, Yu Y, Ha H, et al. (2020) A tailored oxide interface creates dense Pt single-atom catalysts with high catalytic activity Energy & Environmental Science. 13: 1231-1239
Kwon BJ, Kim C, Jokisaari JR, et al. (2020) Intercalation of Mg into a Few-Layer Phyllomanganatein Nonaqueous Electrolytes at Room Temperature Chemistry of Materials. 32: 6014-6025
Quang ND, Majumder S, Choi GS, et al. (2020) Optimization strategy for CdSe@CdS core–shell nanorod structures toward high performance water splitting photoelectrodes Materials Research Bulletin. 129: 110914
Hieu NM, Lam DV, Hien TT, et al. (2020) ZnTe-coated ZnO nanorods: Hydrogen sulfide nano-sensor purely controlled by pn junction Materials & Design. 191: 108628
Hung NM, Chinh ND, Nguyen TD, et al. (2020) Carbon nanotube-metal oxide nanocomposite gas sensing mechanism assessed via NO2 adsorption on n-WO3/p-MWCNT nanocomposites Ceramics International
Eom JY, Kim SI, Ri V, et al. (2019) The effect of polymeric binders in the sulfur cathode on the cycling performance for lithium-sulfur batteries. Chemical Communications (Cambridge, England)
Hieu NM, Phuoc CV, Hien TT, et al. (2019) A Separated Receptor/Transducer Scheme as Strategy to Enhance the Gas Sensing Performance Using Hematite-Carbon Nanotube Composite. Sensors (Basel, Switzerland). 19
Kwon BJ, Dogan F, Jokisaari J, et al. (2019) Effect of Passivating Shells on the Chemistry and Electrode Properties of LiMn2O4 Nanocrystal Heterostructures. Acs Applied Materials & Interfaces
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