Jun Hyuk Moon

2005-2007 Materials Science & Engineering University of Pennsylvania, Philadelphia, PA, United States 
"Jun Moon"
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Shu Yang post-doc 2005-2007 Penn
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Kim K, Nam SK, Cho J, et al. (2020) Photon upconversion-assisted dual-band luminescence solar concentrators coupled with perovskite solar cells for highly efficient semi-transparent photovoltaic systems. Nanoscale
Kim C, Moon JH. (2020) 3D Bicontinuous Structure of a Pseudocapacitive Ultrathin Shell/Carbon Core: A Novel Electrode for Thin-Film Supercapacitors with High Areal Energy Density Acs Sustainable Chemistry & Engineering
Lee J, Moon JH. (2020) Polyhedral TiO2 particle-based cathode for Li-S batteries with high volumetric capacity and high performance in lean electrolyte Chemical Engineering Journal. 399: 125670
Gueon D, Yoon J, Hwang JT, et al. (2020) Microdomain sulfur-impregnated CeO2-coated CNT particles for high-performance Li-S batteries Chemical Engineering Journal. 390: 124548
Choi DH, Nam SK, Kim K, et al. (2019) Enhanced photoelectrochemical water splitting of bismuth vanadate by photon upconversion luminescent reflector. Angewandte Chemie (International Ed. in English)
Kim K, Nam SK, Park JH, et al. (2019) Growth of BiVO4 nanoparticles on a WO3 porous scaffold: improved water-splitting by high band-edge light harvesting Journal of Materials Chemistry. 7: 4480-4485
Choi DH, Nam SK, Jung K, et al. (2019) 2D photonic crystal nanodisk array as electron transport layer for highly efficient perovskite solar cells Nano Energy. 56: 365-372
Gueon D, Moon JH. (2018) Polydopamine-wrapped, silicon nanoparticle-impregnated macroporous CNT particles: rational design of high-performance lithium-ion battery anodes. Chemical Communications (Cambridge, England)
Kim K, Moon JH. (2018) Three-Dimensional Bicontinuous BiVO/ZnO Photoanodes for High Solar Water-Splitting Performance at Low Bias Potential. Acs Applied Materials & Interfaces
Kim C, Moon JH. (2018) Hierarchical Pore-Patterned Carbon Electrodes for High Volumetric Energy Density Microsupercapacitors. Acs Applied Materials & Interfaces
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