Evan Kang
Affiliations: | 2016-2018 | Laboratory of Organic electronics | Linköping University, Linköping, Östergötlands län, Sweden |
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Parents
Sign in to add mentorEunseong Kim | grad student | 2010-2014 | KAIST (Physics Tree) |
Heinz von Seggern | post-doc | 2014-2016 | Technische Universität Darmstadt |
Magnus P. Jonsson | post-doc | 2016-2018 | Linköping University |
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Publications
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Choi KR, Li S, Park DH, et al. (2024) Photoluminescence lifetime engineering via organic resonant films with molecular aggregates. Nanophotonics (Berlin, Germany). 13: 1033-1037 |
Kang ESH, Kk S, Jeon I, et al. (2022) Organic Anisotropic Excitonic Optical Nanoantennas. Advanced Science (Weinheim, Baden-Wurttemberg, Germany). e2201907 |
Kim H, Moon S, Kim J, et al. (2021) Purcell-enhanced photoluminescence of few-layer MoS transferred on gold nanostructure arrays with plasmonic resonance at the conduction band edge. Nanoscale |
Malekian B, Xiong K, Kang ESH, et al. (2019) Optical properties of plasmonic nanopore arrays prepared by electron beam and colloidal lithography. Nanoscale Advances. 1: 4282-4289 |
Chen S, Kang ESH, Shiran Chaharsoughi M, et al. (2019) Conductive polymer nanoantennas for dynamic organic plasmonics. Nature Nanotechnology |
Kang ESH, Ekinge H, Jonsson MP. (2019) Plasmonic fanoholes: on the gradual transition from suppressed to enhanced optical transmission through nanohole arrays in metal films of increasing film thickness Optical Materials Express. 9: 1404 |
Kang ESH, Shiran Chaharsoughi M, Rossi S, et al. (2019) Hybrid plasmonic metasurfaces Journal of Applied Physics. 126: 140901 |
Sardar S, Wojcik P, Kang ESH, et al. (2019) Structural coloration by inkjet-printing of optical microcavities and metasurfaces Journal of Materials Chemistry C. 7: 8698-8704 |
Kang ESH, Chen S, Sardar S, et al. (2018) Strong Plasmon–Exciton Coupling with Directional Absorption Features in Optically Thin Hybrid Nanohole Metasurfaces Acs Photonics. 5: 4046-4055 |
Kang ES, Kim E. (2015) Multi-barrier field-emission behavior in PBTTT thin films at low temperatures. Scientific Reports. 5: 8396 |