Heejae Kim
Affiliations: | Max Planck Institute for Polymer Research |
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Parents
Sign in to add mentorMinhaeng Cho | grad student | 2014 | Korea University |
Mischa Bonn | post-doc | Max Planck Institute for Polymer Research | |
Johannes Hunger | post-doc | Max Planck Institute for Polymer Research |
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Publications
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Di Virgilio L, Geuchies JJ, Kim H, et al. (2023) Controlling the electro-optic response of a semiconducting perovskite coupled to a phonon-resonant cavity. Light, Science & Applications. 12: 183 |
Berghoff D, Bühler J, Bonn M, et al. (2021) Low-field onset of Wannier-Stark localization in a polycrystalline hybrid organic inorganic perovskite. Nature Communications. 12: 5719 |
Kim H, Lee K, Dismukes AH, et al. (2020) Charge carrier scattering and ultrafast Auger dynamics in two-dimensional superatomic semiconductors Applied Physics Letters. 116: 201109 |
Grechko M, Bretschneider SA, Vietze L, et al. (2018) Vibrational coupling between organic and inorganic sub-lattices of hybrid perovskites. Angewandte Chemie (International Ed. in English) |
Grechko M, Bretschneider SA, Vietze L, et al. (2018) Kopplung von hoch- und niederfrequenten Schwingungsmoden in organisch-anorganischen Perowskiten Angewandte Chemie. 130: 13845-13849 |
Kim H, Hunger J, Cánovas E, et al. (2017) Direct observation of mode-specific phonon-band gap coupling in methylammonium lead halide perovskites. Nature Communications. 8: 687 |
Malm C, Kim H, Wagner M, et al. (2017) Complexity in acid-base titrations: Multimer formation between phosphoric acids and imines. Chemistry (Weinheim An Der Bergstrasse, Germany) |
Balos V, Kim H, Bonn M, et al. (2016) Dissecting Hofmeister Effects: Direct Anion-Amide Interactions Are Weaker than Cation-Amide Binding. Angewandte Chemie (International Ed. in English) |
Balos V, Kim H, Bonn M, et al. (2016) Hofmeister-Effekte unter der Lupe: Die direkte Anion-Amid-Bindung ist schwächer als die Kation-Amid-Bindung Angewandte Chemie. 128: 8257-8261 |
Choi JH, Kim H, Kim S, et al. (2015) Ion aggregation in high salt solutions. III. Computational vibrational spectroscopy of HDO in aqueous salt solutions. The Journal of Chemical Physics. 142: 204102 |