Search Results - "Růžičková, Zdenka"

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  1. 1

    Study of Donor–Acceptor Bonds on the N‐Coordinated Sn/Pb(II) Atoms in peri‐Substituted Naphthalenes: Evidence of Pb→B Interaction by Aman, Michal, Dostál, Libor, Mikysek, Tomáš, Růžičková, Zdenka, Mebs, Stefan, Beckmann, Jens, Jambor, Roman

    Published in European journal of inorganic chemistry (15-10-2020)
    “…Peri‐substituted naphthalene derivatives, namely, N‐coordinated plumbylenes 1‐PPh2‐8‐PbL‐C10H6 (4) and 1‐BCy2‐8‐PbL‐C10H6 (5) (L = 2,6‐(Me2NCH2)2C6H3) were…”
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  2. 2

    Prototropic μ‑H8,9 and μ‑H9,10 Tautomers Derived from the [nido-5,6‑C2B8H11]− Anion by Tok, Oleg L., Růžičková, Zdenka, Růžička, Aleš, Hnyk, Drahomír, Štíbr, Bohumil

    Published in Inorganic chemistry (17-10-2016)
    “…Reported is an unusual tautomeric behavior within the [nido-5,6-C2B8H11]− (1a– ) cage that has no precedence in the whole area of carborane chemistry. Isolated…”
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    Journal Article
  3. 3

    Tetrazole Ring Substitution at Carbon and Boron Sites of the Cobalt Bis(dicarbollide) Ion Available via Dipolar Cycloadditions by El Anwar, Suzan, Růžičková, Zdeňka, Bavol, Dmytro, Fojt, Lukáš, Grüner, Bohumír

    Published in Inorganic chemistry (07-12-2020)
    “…Herein, we describe the synthesis of two families of compounds accessible from [3 + 2] cycloaddition reactions of known B8-substituted isonitrilium and new…”
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  4. 4

    Sn,P-Peri-Substituted Naphthalene as a Ligand for Transition Metals by Aman, Michal, Dostál, Libor, Růžičková, Zdeňka, Turek, Jan, Jambor, Roman

    Published in Organometallics (22-08-2022)
    “…Peri-substituted naphthalene 1-PPh2-8-SnL-C10H6 (1) [L = 2,6-(Me2NCH2)2C6H3] was used as a ligand for the complexation of transition metals (TMs). The presence…”
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  5. 5

    Phosphine‐substituted N‐coordinated Stannylene: Efficient Catalyst in Ketone Hydroboration by Moždiak, Ondřej, Růžičková, Zdeňka, Erben, Milan, Dostál, Libor, Jambor, Roman

    Published in European journal of inorganic chemistry (13-08-2024)
    “…P‐substituted stannylene (Ph2PCH2)(L)Sn containing N,C,N‐pincer ligand (L=[2,6‐(Me2NCH2)2C6H3]) was prepared. The complex was further oxidised to prepare…”
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  6. 6

    Lithium, Magnesium, and Zinc Centers N,N′-Chelated by an Amine–Amide Hybrid Ligand by Chlupatý, Tomáš, Růžičková, Zdeňka, Kampová, Hana, Merna, Jan, Růžička, Aleš

    Published in Inorganic chemistry (27-06-2022)
    “…The synthesis and structure of lithium, magnesium, and zinc complexes N,N′-chelated by a hybrid amine–amido ligand ([2-(Me2NCH2)­C6H4NR]−, abbreviated as L N…”
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  7. 7

    Spontaneous Hydrosilylation of Substituted C=N Imines by Růžičková, Zdeňka, Jambor, Roman, Novák, Miroslav

    Published in European journal of inorganic chemistry (31-07-2019)
    “…4‐Methoxy and 2,4‐di‐tBu substituted C,N‐chelating ligands 2‐[(2,6‐iPr2‐C6H3)N=CH]‐4‐MeO‐C6H3}– and {2‐[(2,6‐iPr2‐C6H3)N=CH]‐4,6‐tBu2‐C6H3}– and also…”
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  8. 8

    N,C,N‑Coordinated Stannylenes as Ligands in Ag(I) and Au(I) Complexes by Jambor, Roman, Dostál, Libor, Erben, Milan, Růžičková, Zdenka, Jirásko, Robert, Hoffmann, Alexander

    Published in Organometallics (22-03-2021)
    “…The intramolecularly N→Sn coordinated stannylene L­(Cl)­Sn (1), where L is {2,6-(Me2NCH2)2C6H3}−, has been used as a ligand for silver­(I) and gold­(I)…”
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  9. 9

    Access to cationic polyhedral carboranes via dynamic cage surgery with N-heterocyclic carbenes by Vrána, Jan, Holub, Josef, Samsonov, Maksim A., Růžičková, Zdeňka, Cvačka, Josef, McKee, Michael L., Fanfrlík, Jindřich, Hnyk, Drahomír, Růžička, Aleš

    Published in Nature communications (17-08-2021)
    “…Polyhedral boranes and heteroboranes appear almost exclusively as neutral or anionic species, while the cationic ones are protonated at exoskeletal heteroatoms…”
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  10. 10

    Carbon-Substituted Amines of the Cobalt Bis(dicarbollide) Ion: Stereochemistry and Acid–Base Properties by Tüzün, Ece Zeynep, Pazderová, Lucia, Bavol, Dmytro, Litecká, Miroslava, Hnyk, Drahomír, Růžičková, Zdeňka, Horáček, Ondřej, Kučera, Radim, Grűner, Bohumír

    Published in Inorganic chemistry (28-10-2024)
    “…Organic amines are found to be abundant in natural living systems. They also constitute an inestimable family of building blocks available in drug design…”
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  11. 11

    Lithium and Dilithium Guanidinates, a Starter Kit for Metal Complexes Containing Various Mono- and Dianionic Ligands by Chlupatý, Tomáš, Nevoralová, Jana, Růžičková, Zdeňka, Růžička, Aleš

    Published in Inorganic chemistry (03-08-2020)
    “…Comparative studies of the synthesis of lithium guanidinates via nucleophilic addition of lithium amides to carbodiimides were performed. Four combinations of…”
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  12. 12

    Ambiguous Role of N → Sn Coordinated Stannylene: Lewis Base or Acid? by Aman, Michal, Dostál, Libor, Růžičková, Zdenka, Mebs, Stefan, Beckmann, Jens, Jambor, Roman

    Published in Organometallics (25-02-2019)
    “…peri-Substituted naphthalene derivatives 1-BCy2-8-SnL-C10H6 (5), 1-PPh2-8-SnL-C10H6 (6), and 1,8-(SnL)2-C10H6 (7) (L = 2,6-(Me2NCH2)2C6H3) were prepared…”
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  13. 13

    Triphenylamine-based fluorophores bearing peripheral diazine regioisomers. Synthesis, characterization, photophysics and two-photon absorption by Klikar, Milan, Georgiou, Dimitris, Polyzos, Ioannis, Fakis, Mihalis, Růžičková, Zdeňka, Pytela, Oldřich, Bureš, Filip

    Published in Dyes and pigments (01-05-2022)
    “…A series of six tripodal push-pull fluorophores with D-(π-A3) arrangement has been designed and synthesized. The structure of these fluorophores consists of a…”
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  14. 14

    From Monomeric Tin(II) Hydride to Nonsymmetric Distannyne by Novák, Miroslav, Dostál, Libor, Růžičková, Zdenka, Mebs, Stefan, Beckmann, Jens, Jambor, Roman

    Published in Organometallics (24-06-2019)
    “…The monomeric tin­(II) hydride L2(H)­Sn·W­(CO)5 (2), where L2 is 2-Et2NCH2-4,6-tBu2-C6H2, was easily transformed to the nonsymmetrical distannyne…”
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  15. 15

    Electrophilic Methylation of Decaborane(14): Selective Synthesis of Tetramethylated and Heptamethylated Decaboranes and Their Conjugated Bases by Holub, Josef, Růžička, Aleš, Růžičková, Zdeňka, Fanfrlík, Jindřich, Hnyk, Drahomír, Štíbr, Bohumil

    Published in Inorganic chemistry (03-08-2020)
    “…The paper reports specific syntheses of methylated decaborane(14), nido-B10H14 (1), derivatives. The reaction of 1 with an excess of neat MeI and AlCl3 yields…”
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  16. 16

    Ruthenium Complexes with N‐Bound 2‐Pyridonato Ligand as O‐Donors: A New Synthetic Approach and the Effect on Reactivity by Moždiak, Ondřej, Tydlitát, Jiří, Růžičková, Zdeňka, Dostál, Libor, Jambor, Roman

    Published in ChemPlusChem (Weinheim, Germany) (01-04-2024)
    “…In this study, Ru complexes [(η6‐p‐cymene)RuX(2‐{(2,6‐iPr2‐C6H3)N=CH}‐C5H3N‐6‐(O))] (3: X=Cl; 4: X=I) were prepared with N‐bound 2‐pyridonato ligand by thermal…”
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  17. 17

    Photophysical properties of acid-responsive triphenylamine derivatives bearing pyridine fragments: Towards white light emission by Tydlitát, Jiří, Achelle, Sylvain, Rodríguez-López, Julián, Pytela, Oldřich, Mikýsek, Tomáš, Cabon, Nolwenn, Robin-le Guen, Françoise, Miklík, David, Růžičková, Zdeňka, Bureš, Filip

    Published in Dyes and pigments (01-11-2017)
    “…The synthesis, thermal, electrochemical, and optical properties of a series of triphenylamine derivatives bearing pyridine fragments and their trifluoroacetate…”
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  18. 18
  19. 19

    Ferrocene donor linked to pyridine/pyridinium acceptor via a systematically enlarged π-linker by Kulhánek, Jiří, Klikar, Milan, Pytela, Oldřich, Růžičková, Zdenka, Bureš, Filip

    Published in RSC advances (03-12-2021)
    “…Nine chromophores with ferrocene donor and pyridine/pyridinium acceptors have been prepared and further investigated. The performed X-ray analysis showed…”
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  20. 20

    Synthesis of closo-1,2‑H2C2B8Me8 and 1,2‑H2C2B8Me7X (X = I and OTf) Dicarbaboranes and Their Rearrangement Reactions by Bakardjiev, Mario, Růžička, Aleš, Růžičková, Zdeňka, Tok, Oleg L, Holub, Josef, Hnyk, Drahomír, Fanfrlík, Jindřich, Štíbr, Bohumil

    Published in Inorganic chemistry (18-02-2019)
    “…Methyl-camouflaged dicarbaboranes closo-1,2- and 1,10-H2C2B8Me8 have been prepared in high yields either from nido-5,6-H2C2B8H10 or closo-1,2-H2C2B8H8 via…”
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