Michal Straka

Affiliations: 
University of Helsinki, Helsingfors, Finland 
 Institute of Organic Chemistry and Biochemistry, Czech Academy of Sciences 
Area:
Computational chemistry, relativistic chemistry, fullerenes
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"Michal Straka"
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Parents

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Pekka Pyykkö grad student Univ. Helsinki (Physics Tree)
Martin Kaupp post-doc 2002-2004 University of Wurzburg
Juha Vaara post-doc 2004-2007 Univ. Helsinki

Children

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Adam Jaroš grad student 2018-2023 Charles University
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Publications

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Jaroš A, Straka M. (2023) Unraveling actinide-actinide bonding in fullerene cages: a DFT methodological study. Physical Chemistry Chemical Physics : Pccp. 25: 31500-31513
Tučková L, Jaroš A, Foroutan-Nejad C, et al. (2023) A quest for ideal electric field-driven MX@C endohedral fullerene memristors: which MX fits the best? Physical Chemistry Chemical Physics : Pccp. 25: 14245-14256
Vícha J, Vaara J, Straka M. (2023) The essential role of symmetry in understanding He chemical shifts in endohedral helium fullerenes. Physical Chemistry Chemical Physics : Pccp
Andris E, Straka M, Vrána J, et al. (2023) Can Copper(I) and Silver(I) be Hydrogen Bond Acceptors? Chemistry (Weinheim An Der Bergstrasse, Germany). e202203769
Jaroš A, Foroutan-Nejad C, Straka M. (2021) Correction to From π Bonds without σ Bonds to the Longest Metal-Metal Bond Ever: A Survey on Actinide-Actinide Bonding in Fullerenes. Inorganic Chemistry. 60: 505-506
Hacaperková E, Jaroš A, Kotek J, et al. (2020) Al(III)-NTA-fluoride: a simple model system for Al-F binding with interesting thermodynamics. Dalton Transactions (Cambridge, England : 2003). 49: 13726-13736
Jaroš A, Foroutan-Nejad C, Straka M. (2020) From π Bonds without σ Bonds to the Longest Metal-Metal Bond Ever: A Survey on Actinide-Actinide Bonding in Fullerenes. Inorganic Chemistry. 59: 12608-12615
Vı Cha J, Novotný J, Komorovsky S, et al. (2020) Relativistic Heavy-Neighbor-Atom Effects on NMR Shifts: Concepts and Trends Across the Periodic Table. Chemical Reviews
Vícha J, Švec P, Růžičková Z, et al. (2020) Experimental and Theoretical Evidence of Spin-Orbit Heavy Atom on the Light Atom 1 H NMR Chemical Shifts Induced through H⋅⋅⋅I- Hydrogen Bond. Chemistry: a European Journal. 26: 8669-8669
Vícha J, Švec P, Růžičková Z, et al. (2020) Front Cover: Experimental and Theoretical Evidence of Spin‐Orbit Heavy Atom on the Light Atom 1H NMR Chemical Shifts Induced through H⋅⋅⋅I− Hydrogen Bond (Chem. Eur. J. 40/2020) Chemistry: a European Journal. 26: 8665-8665
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