Search Results - "Střižík, Lukáš"

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  1. 1

    Titanocene(IV) and vanadocene(IV) complexes of dicyanomethanidobenzoate by Honzíček, Jan, Vinklárek, Jaromír, Erben, Milan, Střižík, Lukáš, Císařová, Ivana, Padělková, Zdeňka

    Published in Journal of organometallic chemistry (15-12-2009)
    “…The synthesis of Cp 2Ti(dcmb) 2, Cp 2VCl(dcmb), (η 5-C 5H 4Me) 2VCl(dcmb) and Cp 2V(dcmb) 2 is described. This study proves that dicyanobenzoate (dcmb,…”
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  2. 2

    SnS and SnS 2 thin films deposited using a spin‐coating technique from intramolecularly coordinated organotin sulfides by Řičica, Tomáš, Střižík, Lukáš, Dostál, Libor, Bouška, Marek, Vlček, Milan, Beneš, Ludvík, Wágner, Tomáš, Jambor, Roman

    Published in Applied organometallic chemistry (01-03-2015)
    “…Synthesis and applications of organotin(II) sulfide ({2,6‐(Me 2 NCH 2 ) 2 C 6 H 3 }Sn) 2 (μ‐S) ( 1 ), organotin(II) thiophenolate {2,6‐(Me 2 NCH 2 ) 2 C 6 H 3…”
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  3. 3

    Mixed Organotin(IV) Chalcogenides: From Molecules to Sn-S-Se Semiconducting Thin Films Deposited by Spin-Coating by Bouška, Marek, Střižík, Lukáš, Dostál, Libor, Růžička, Aleš, Lyčka, Antonín, Beneš, Ludvík, Vlček, Milan, Přikryl, Jan, Knotek, Petr, Wágner, Tomáš, Jambor, Roman

    Published in Chemistry : a European journal (04-02-2013)
    “…Put the right spin on it: Mixed monomeric organotin(IV) chalcogenides of the general formula L2Sn2EX2 containing two terminal Sn–X (X=Se, Te) bonds were…”
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  4. 4

    SnS and SnS2 thin films deposited using a spin-coating technique from intramolecularly coordinated organotin sulfides by Řičica, Tomáš, Střižík, Lukáš, Dostál, Libor, Bouška, Marek, Vlček, Milan, Beneš, Ludvík, Wágner, Tomáš, Jambor, Roman

    Published in Applied organometallic chemistry (01-03-2015)
    “…Synthesis and applications of organotin(II) sulfide ({2,6‐(Me2NCH2)2C6H3}Sn)2(μ‐S) (1), organotin(II) thiophenolate {2,6‐(Me2NCH2)2C6H3}Sn(SPh) (2) and…”
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  5. 5

    Deep red upconversion photoluminescence in Er3+‐doped Yb3Ga5O12 nanocrystalline garnet by Netolicky, Tomas, Strizik, Lukas, Benes, Ludvik, Melanova, Klara, Slang, Stanislav, Wagner, Tomas

    Published in Journal of the American Ceramic Society (01-05-2022)
    “…The nanocrystalline single‐phase Er3+‐doped Yb3Ga5O12 garnets have been prepared by the sol‐gel combustion technique with a crystallite size of ≈30 nm. The…”
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  6. 6

    Deep red upconversion photoluminescence in Er 3+ ‐doped Yb 3 Ga 5 O 12 nanocrystalline garnet by Netolicky, Tomas, Strizik, Lukas, Benes, Ludvik, Melanova, Klara, Slang, Stanislav, Wagner, Tomas

    Published in Journal of the American Ceramic Society (01-05-2022)
    “…The nanocrystalline single‐phase Er 3+ ‐doped Yb 3 Ga 5 O 12 garnets have been prepared by the sol‐gel combustion technique with a crystallite size of ≈30 nm…”
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  7. 7

    Distribution of Tm3+ and Ni2+ in chalcogenide glass ceramics containing Ga2S3 nanocrystals: Influence on photoluminescence properties by Lu, Xiaosong, Lai, Zhiqiang, Ren, Jing, Strizik, Lukas, Wagner, Tomas, Du, Yanqiu, Farrell, Gerald, Wang, Pengfei

    Published in Journal of the European Ceramic Society (01-07-2019)
    “…The distribution of Tm3+ and Ni2+ ions is unambiguously exhibited in 80GeS2-20Ga2S3 chalcogenide glass ceramics (GCs) containing Ga2S3 nanocrystals (NCs) by…”
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  8. 8

    Ultrabroadband mid-infrared emission from Cr2+-doped infrared transparent chalcogenide glass ceramics embedded with thermally grown ZnS nanorods by Lu, Xiaosong, Lai, Zhiqiang, Zhang, Runan, Guo, Haitao, Ren, Jing, Strizik, Lukas, Wagner, Tomas, Farrell, Gerald, Wang, Pengfei

    Published in Journal of the European Ceramic Society (01-09-2019)
    “…We report, for the first time to our knowledge, an ultrabroadband mid-infrared (MIR) emission in the range of 1800–2800 nm at room temperature from a…”
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  9. 9

    Crystal-field engineering of ultrabroadband mid-infrared emission in Co2+-doped nano-chalcogenide glass composites by Lu, Xiaosong, Zhang, Runan, Zhang, Yindong, Zhang, Shaoqian, Ren, Jing, Strizik, Lukas, Wagner, Tomas, Farrell, Gerald, Wang, Pengfei

    Published in Journal of the European Ceramic Society (01-01-2020)
    “…Tunable and ultrabroadband mid-infrared (MIR) emissions in the range of 2.5–4.5 μm are firstly reported from Co2+-doped nano-chalcogenide (ChG) glass…”
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  10. 10

    Atomic Layer Deposition Al2O3 Coatings Significantly Improve Thermal, Chemical, and Mechanical Stability of Anodic TiO2 Nanotube Layers by Zazpe, Raul, Prikryl, Jan, Gärtnerova, Viera, Nechvilova, Katerina, Benes, Ludvik, Strizik, Lukas, Jäger, Ales, Bosund, Markus, Sopha, Hanna, Macak, Jan M

    Published in Langmuir (04-04-2017)
    “…We report on a very significant enhancement of the thermal, chemical, and mechanical stability of self-organized TiO2 nanotubes layers, provided by thin Al2O3…”
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  11. 11

    Quadrature frequency resolved spectroscopy of upconversion photoluminescence in GeGaS:Er3+: I. Determination of energy transfer upconversion parameter by Strizik, Lukas, Prokop, Vit, Hrabovsky, Jan, Wagner, Tomas, Aoki, Takeshi

    “…The article presents the formulas of quadrature frequency resolved spectroscopy (QFRS) on the upconversion photoluminescence (UCPL) of rare-earth (RE) doped…”
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  12. 12

    Quadrature frequency resolved spectroscopy of upconversion photoluminescence in GeGaS:Er3+; II. elucidating excitation mechanisms of red emission besides green emission by Aoki, Takeshi, Strizik, Lukas, Hrabovsky, Jan, Wagner, Tomas

    “…The paper addresses the quadrature frequency resolved spectroscopy (QFRS) on the red ( 4 F 9/2 → 4 I 15/2 ) upconverted photoluminescence (UCPL) as well as the…”
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  13. 13

    1.2 µm and 1.5 µm near-infrared photoluminescence and visible upconversion photoluminescence in GeGaS:Er3+/Ho3+ glasses under 980 nm excitation by Himics, Dianna, Strizik, Lukas, Oswald, Jiri, Holubova, Jana, Benes, Ludvik, Slang, Stanislav, Frumarova, Bozena, Wagner, Tomas

    “…We report on the Er 3+  ↔ Ho 3+ optical interaction on the 1.2 and 1.5 µm near-infrared and visible upconversion photoluminescence in Er 3+ /Ho 3+ -co-doped…”
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  14. 14

    Photoluminescence in pulsed-laser deposited GeGaSbS:Er films by Strizik, Lukas, Yannopoulos, Spyros N., Benekou, Vasiliki, Oswald, Jiri, Pavlista, Martin, Prokop, Vit, Wagner, Tomas, Orava, Jiri

    Published in Optical materials (01-11-2018)
    “…The complex dielectric function, the Er3+ Stokes emission at ≈1540 nm and the upconversion photoluminescence at ≈990 nm of pulsed-laser deposited thin-film…”
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  15. 15

    Atomic Layer Deposition Al 2 O 3 Coatings Significantly Improve Thermal, Chemical, and Mechanical Stability of Anodic TiO 2 Nanotube Layers by Zazpe, Raul, Prikryl, Jan, Gärtnerova, Viera, Nechvilova, Katerina, Benes, Ludvik, Strizik, Lukas, Jäger, Ales, Bosund, Markus, Sopha, Hanna, Macak, Jan M

    Published in Langmuir (04-04-2017)
    “…We report on a very significant enhancement of the thermal, chemical, and mechanical stability of self-organized TiO nanotubes layers, provided by thin Al O…”
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  16. 16

    Antireflection ln2O3 coatings of self-organized TiO2 nanotube layers prepared by atomic layer deposition by Macak, Jan M., Prikryl, Jan, Sopha, Hanna, Strizik, Lukas

    “…We report on the uniform anti‐reflection coating of TiO2 nanotube layers with a secondary material – indium trioxide (In2O3) – by atomic layer deposition…”
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    Antireflection ln sub(2)O sub(3) coatings of self-organized TiO sub(2) nanotube layers prepared by atomic layer deposition by Macak, Jan M, Prikryl, Jan, Sopha, Hanna, Strizik, Lukas

    “…We report on the uniform anti-reflection coating of TiO sub(2) nanotube layers with a secondary material - indium trioxide (In sub(2)O sub(3)) - by atomic…”
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  20. 20

    MoSexOy‐Coated 1D TiO2 Nanotube Layers: Efficient Interface for Light‐Driven Applications by Ng, Siowwoon, Krbal, Milos, Zazpe, Raul, Prikryl, Jan, Charvot, Jaroslav, Dvořák, Filip, Strizik, Lukas, Slang, Stanislav, Sopha, Hanna, Kosto, Yuliia, Matolin, Vladimir, Yam, Fong Kwong, Bures, Filip, Macak, Jan M.

    Published in Advanced materials interfaces (08-02-2018)
    “…Ultrathin molybdenum oxyselenide (MoSexOy) coatings are made first ever by atomic layer deposition (ALD) within anodic 1D TiO2 nanotube layers for…”
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