Meno a priezvisko:
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RNDr. Milan Sýkora, PhD., MBA
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Typ dokumentu:
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Vedecko/umelecko-pedagogická charakteristika osoby
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Názov vysokej školy:
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Univerzita Komenského v Bratislave
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Sídlo vysokej školy:
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Šafárikovo námestie 6, 818 06 Bratislava
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III.a - Zamestnanie-pracovné zaradenie | III.b - Inštitúcia | III.c - Časové vymedzenie |
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Docent, Vedúci, Laboratórium pokročilých materiálov, Prírodovedecká fakulta, UK v Bratislave | Prírodovedecká fakulta, UK v Bratislave | 2024 - súčasnosť |
ERA Chair, hosťujúci profesor | Prírodovedecká fakulta, UK v Bratislave | 2019 - 2024 |
Technical Staff Member/Research team leader | Los Alamos National Laboratory, USA | 2011-2018 |
Technical Staff Member/Sr. Manager Center for Advanced Solar Photophysics | Los Alamos National Laboratory, USA | 2009-2011 |
Technical Staff Member | Los Alamos National Laboratory, USA | 2006-2009 |
Visiting scientist | Los Alamos National Laboratory, USA | 2003-2006 |
IV.a - Popis aktivity, názov kurzu (ak išlo o kurz), iné | IV.b - Názov inštitúcie | IV.c - Rok |
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Master of Business Administration (MBA) | Kenan-Flagler Business School, University of North Carolina, Chapel Hill | 2002 |
V.1.a - Názov profilového predmetu | V.1.b - Študijný program | V.1.c - Stupeň | V.1.d - Študijný odbor |
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Pokročilá anorganická chémia | chémia | I. | chémia |
Chémia nanomateriálov | chémia | I. | chémia |
Materiálová chémia | anorganická chémia | II. | chémia |
V.5.a - Názov predmetu | V.5.b - Študijný program | V.5.c - Stupeň | V.5.d - Študijný odbor |
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Perspektívy chémie | chémia, biochémia | I. | chémia |
Vybrané kapitoly z materiálovej chémie 2 | anorganická chémia | III. | chémia |
ADC, Galland, Ch.; Ghosh, Y.; Steinbrueck, A.; Sykora, M.; Hollingsworth, J. A.; Klimov, V. I.; Htoon, H. Two types of luminescence blinking revealed by spectroelectrochemistry of single quantum dots. Nature, 2011, 479, 203-207. (WOS ohlasy: 657)
ADC, Sykora, M.; Kincaid, J. R. Photochemical energy storage in a spatially organized zeolite-based photoredox system. Nature, 1997, 387, 162-164. (WOS ohlasy: 106)
ADC, Sykora, M.; Petruska, M. A.; Alstrum-Acevedo, J.; Bezel, I.; Meyer, T. J.; Klimov, V. I. Photoinduced charge transfer between CdSe nanocrystal quantum dots and Ru-polypyridine complexes.J. Am. Chem. Soc. 2006, 128, 9984-5. (WOS ohlasy: 213)
ADC, Sykora, M.; Koposov, A. Y.; McGuire, J. A.; Schulze, R. K.; Tretiak, O.; Pietryga, J. M.; Klimov, V. I. Effect of Air Exposure on Surface Properties, Electronic Structure, and Carrier Relaxation in PbSe Nanocrystals. ACS Nano, 2010, 4, 2021-2034. (WOS ohlasy: 225)
ADC, Fuke, N.; Hoch, L. B.; Koposov, A. Y.; Manner, V. W.; Werder, D. J.; Fukui, A.; Koide, N.; Katayama, H.; Sykora, M. CdSe Quantum-Dot-Sensitized Solar Cell with ca. 100% Internal Quantum Efficiency. ACS Nano. 2010, 4, 6377-6386. (WOS ohlasy: 115)
ADC, Ji, Z.; Dervishi, E.; Doorn, S. K.; Sykora, M. Size-Dependent Electronic Properties of Strongly Confined Graphene Quantum Dots. J. Phys. Chem. Lett. 2019, 10, 5, 953–959. (WOS ohlasy: 46)
ADC, Dervishi, E.; Ji, Z.; Htoon, H.; Sykora, M.; Doorn, S. K. Raman spectroscopy of bottom-up synthesized graphene quantum dots: size and structure dependence. Nanoscale, 2019,11, 16571-16581. (WOS ohlasy: 203)
ADC, Chang, C-C.; Kort-Kamp, W.; Nogan, J.; Luk, T. S.; Azad, A. K.; Taylor, A. J.; Dalvit, D.; Sykora, M.; Chen, H-T. High-Temperature Refractory Metasurfaces for Solar Thermophotovoltaic Energy Harvesting. Nano Lett. 2018, 18, 12, 7665–7673. (WOS ohlasy: 139)
ADC, Krishnamurthy, S.; Singh, A.; Hu, Z.; Blake, A., V.; Kim, Y.; Singh, A.; Dolgopolova, E. A.; Williams, D. J.; Piryatinski, A.; Malko, A., V.; Htoon, H.;Sykora, M.; Hollingsworth, J. A., PbS/CdS Quantum Dot Room-Temperature Single-Emitter Spectroscopy Reaches the Telecom O and S Bands via an Engineered Stability. ACS Nano 2021, 15, 575–587. (WOS ohlasy: 26)
ADC, R. Bystrický, S. K. Tiwari, P. Hutár, L. Vančo, M. Sýkora, Synthesis of Sulfide Perovskites by Sulfurization with Boron Sulfides. Inorg. Chem. 2022, 61, 18823–18827.(WOS ohlasy: 13)
ADC, Galland, Ch.; Ghosh, Y.; Steinbrueck, A.; Sykora, M.; Hollingsworth, J. A.; Klimov, V. I.; Htoon, H. Two types of luminescence blinking revealed by spectroelectrochemistry of single quantum dots. Nature 2011, 479, 203-207. (WOS ohlasy: 657)
[o1] Kim, JY.; Voznyy, O.; Zhitomirsky, D.; Sargent, EH. - In: Advanced Materials, Vol. 25, No. 36, 2013 ; s. 4986-5010 ; 25th Anniversary Article: Colloidal Quantum Dot Materials and Devices: A Quarter-Century of Advances.
ADC, Sykora, M.; Kincaid, J. R. Photochemical energy storage in a spatially organized zeolite-based photoredox system. Nature, 1997, 387, 162-164. (WOS ohlasy: 106)
[o1] Bein, T. - In: MRS Bulletin, Vol. 30, No. 10, 2005; s. 713-720; Zeolitic host-guest interactions and building blocks for the self-assembly of complex materials.
ADC, Sykora, M.; Petruska, M. A.; Alstrum-Acevedo, J.; Bezel, I.; Meyer, T. J.; Klimov, V. I. Photoinduced charge transfer between CdSe nanocrystal quantum dots and Ru-polypyridine complexes.J. Am. Chem. Soc. 2006, 128, 9984-5. (WOS ohlasy: 213)
[o1] Kamat, P. V.; - In: J. Phys. Chem. C, Vol. 11, No. 7, 2007 ; s. 2834-2860; Meeting the energy demand: Nanostructure Architectures for Energy Conversion.
ADC, Sykora, M.; Koposov, A. Y.; McGuire, J. A.; Schulze, R. K.; Tretiak, O.; Pietryga, J. M.; Klimov, V. I. Effect of Air Exposure on Surface Properties, Electronic Structure, and Carrier Relaxation in PbSe Nanocrystals. ACS Nano, 2010, 4, 2021-2034. (WOS ohlasy: 225)
[o1] Kramer, I. J.; Sargent, EH. - In: Chem. Rev. Vol. 14, No. 1, 2014 ; s. 863-882; The Architecture of Colloidal Quantum Dot Solar Cells: Materials to Devices
ADC, Fuke, N.; Hoch, L. B.; Koposov, A. Y.; Manner, V. W.; Werder, D. J.; Fukui, A.; Koide, N.; Katayama, H.; Sykora, M. CdSe Quantum-Dot-Sensitized Solar Cell with ca. 100% Internal Quantum Efficiency. ACS Nano. 2010, 4, 6377-6386. (WOS ohlasy: 115)
[o1] Jun, H. K.; Careem, M. A.; Arof, A. K. - In: Renew. Sus. En. Rev. Vol. 22, 2013 ; s. 148-167; Quantum dot-sensitized solar cells-perspective and recent developments: A review of Cd chalcogenide quantum dots as sensitizers
Vedúci/ERA Chair, European Commission, Horizon 2020, ERA Chairs programme, project 810701, Establishing Laboratory of Advanced Materials at the Comenius University — LAMatCU, (2018-2024)
Hlavný riešiteľ: APVV 0410-19; Polovodičové ternárne chalkogenidy z úzkym zakázaným pásom (2020-2024)
Hlavný riešiteľ: APVV 0300-23; Nabíjanie a prenos náboja v kvantovo obmedzených nanokryštáloch (2024-2028)
Hlavný riešiteľ: VEGA 1/0892/21; 2D nanomateriály pre optoelektroniku pripravené pomocou “bottom-up” chemických metód. (2021-2024)
Spoluriešiteľ: APVV 0202-23; Ternárne chalkogenidové perovskity pre fotovoltaiku (2024-2028)