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Mendeleev Communications, 2012, Volume 22, Issue 4, Pages 208–210
DOI: https://doi.org/10.1016/j.mencom.2012.06.013
(Mi mendc2793)
 

This article is cited in 26 scientific papers (total in 26 papers)

Binding of NO by Nontransition Metal Complexes

E. V. Ilyakina, A. I. Poddel'sky, V. K. Cherkasov, G. A. Abakumov

G.A. Razuvaev Institute of Organometallic Chemistry, Russian Academy of Sciences, Nizhnii Novgorod, Russian Federation
Abstract: The first example of nitric oxide fixation by nontransition metal complexes was found: lead(ii) and zinc(ii) catecholato complexes readily react with nitric oxide to give the corresponding nitrosyl-containing mono-o-semiquinonates; the process of binding and transfer of NO can be easily monitored by EPR spectroscopy.
Keywords: redox-active ligands, catecholate, lead(II), zinc(II), NO binding, EPR.
Document Type: Article
Language: English
Supplementary materials:
Supplementary_data_1.pdf (389.7 Kb)


Citation: E. V. Ilyakina, A. I. Poddel'sky, V. K. Cherkasov, G. A. Abakumov, “Binding of NO by Nontransition Metal Complexes”, Mendeleev Commun., 22:4 (2012), 208–210
Linking options:
  • https://www.mathnet.ru/eng/mendc2793
  • https://www.mathnet.ru/eng/mendc/v22/i4/p208
  • This publication is cited in the following 26 articles:
    1. S. V. Baryshnikova, M. V. Arsen'eva, N. O. Druzhkov, G. K. Fukin, E. V. Baranov, A. V. Piskunov, “Redox-Active Tin(IV) Complexes Based on Sterically Hindered Catecholate Ligands”, Koordinacionnaâ himiâ, 50:2 (2024), 100  crossref
    2. S. V. Baryshnikova, M. V. Arsen'ev, N. O. Druzhkov, G. K. Fukin, E. V. Baranov, A. V. Piskunov, “Redox-Active Tin(IV) Complexes Based on Sterically Hindered Catecholate Ligands”, Russ J Coord Chem, 50:1 (2024), 49  crossref
    3. Pavel A. Petrov, Elizaveta A. Filippova, Taisiya S. Sukhikh, Dmitriy G. Sheven, Alexander S. Novikov, “Adducts of a sterically hindered tellurium(iv) catecholate with diimines”, New J. Chem., 48:35 (2024), 15483  crossref
    4. Tatiana N. Kocherova, Konstantin A. Martyanov, Roman V. Rumyantcev, Nikolay O. Druzhkov, Viacheslav A. Kuropatov, “Imination of Sterically Unshielded o‐Quinones in the Coordination Sphere of Zinc (II)”, ChemistrySelect, 9:22 (2024)  crossref
    5. P. A. Petrov, E. A. Filippova, T. S. Sukhikh, “Adducts of Sterically Hindered Tellurium Catecholate with N-Methylpyrrolidone”, Russ J Coord Chem, 50:9 (2024), 683  crossref
    6. P. A. Petrov, E. A. Filippova, T. S. Sukhikh, “Adducts of Sterically Hindered Tellurium Catecholate with N-Methylpyrrolidone”, Koordinacionnaâ himiâ, 50:10 (2024), 661  crossref
    7. A. V. Maleeva, O. Yu. Trofimova, T. N. Kocherova, I. A. Yakushev, A. S. Bogomyakov, A. V. Piskunov, “Coordination Polymer or Cluster: Zinc Bis(3,5-di-tert-octyl-semiquinolate) with Pyrazine”, Koordinacionnaâ himiâ, 49:11 (2023), 693  crossref
    8. A. V. Maleeva, O. Yu. Trofimova, T. N. Kocherova, I. A. Yakushev, A. S. Bogomyakov, A. V. Piskunov, “Coordination Polymer or Cluster: Zinc Bis(3,5-di-tert-octyl-semiquinolate) with Pyrazine”, Russ J Coord Chem, 49:11 (2023), 718  crossref
    9. Rezisha Maskey, Lutz Greb, Encyclopedia of Inorganic and Bioinorganic Chemistry, 2022, 1  crossref
    10. Ivan V. Smolyaninov, Andrey I. Poddel'sky, Susanna A. Smolyaninova, Maxim V. Arsenyev, Georgy K. Fukin, Nadezhda T. Berberova, “Polyfunctional Sterically Hindered Catechols with Additional Phenolic Group and Their Triphenylantimony(V) Catecholates: Synthesis, Structure, and Redox Properties”, Molecules, 25:8 (2020), 1770  crossref
    11. L. S. Okhlopkova, I. V. Smolyaninov, A. I. Poddel'skii, “Heterometallic Complexes Based on Triphenylantimony(V) Quinone-Catecholate”, Russ J Coord Chem, 46:11 (2020), 762  crossref
    12. Samuel J. Stoneburner, Laura Gagliardi, “Air Separation by Catechol-Ligated Transition Metals: A Quantum Chemical Screening”, J. Phys. Chem. C, 122:39 (2018), 22345  crossref
    13. Andrey I. Poddel'sky, Tatyana V. Astaf'eva, Ivan V. Smolyaninov, Maxim A. Arsenyev, Georgy K. Fukin, Nadezhda T. Berberova, Vladimir K. Cherkasov, Gleb A. Abakumov, “Triphenylantimony(V) 6-alkoxymethyl-3,5-di-tert-butylcatecholates. Structure and redox-properties”, Journal of Organometallic Chemistry, 873 (2018), 57  crossref
    14. Pavel A. Petrov, “Triangular Clusters of Molybdenum Coordinated with Tetrabromocatecholate”, J Clust Sci, 28:4 (2017), 1815  crossref
    15. Z. N. Gafurov, A. O. Kantyukov, A. A. Kagilev, A. A. Balabayev, O. G. Sinyashin, D. G. Yakhvarov, “Nickel and palladium N-heterocyclic carbene complexes. Synthesis and application in cross-coupling reactions”, Russ Chem Bull, 66:9 (2017), 1529  crossref
    16. Andrey I. Poddel'sky, Maxim V. Arsenyev, Tatyana V. Astaf'eva, Sergey A. Chesnokov, Georgy K. Fukin, Gleb A. Abakumov, “New sterically-hindered 6th-substituted 3,5-di- tert -butylcatechols/ o -quinones with additional functional groups and their triphenylantimony(V) catecholates”, Journal of Organometallic Chemistry, 835 (2017), 17  crossref
    17. Maxim G. Chegerev, Alyona A. Starikova, Alexander V. Piskunov, Vladimir K. Cherkasov, “Valence Tautomerism in Main‐Group Complexes? Computational Modeling of Si, Ge, Sn, and Pb Bischelates with o‐Iminoquinone Ligands”, Eur J Inorg Chem, 2016:2 (2016), 252  crossref
    18. Alexander V. Piskunov, Maxim G. Chegerev, Georgy K. Fukin, “Redox-induced C–C bond formation reaction between mono-o-amidophenolate tin complexes and allylhalides”, Journal of Organometallic Chemistry, 803 (2016), 51  crossref
    19. P. A. Petrov, M. Yu. Afonin, D. Yu. Naumov, S. N. Konchenko, A. V. Piskunov, “Novel molybdenum complexes with the 3,6-Di-tert-butylcatecholate ligand”, Russ J Coord Chem, 41:1 (2015), 31  crossref
    20. A. V. Piskunov, M. G. Chegerev, L. B. Vaganova, G. K. Fukin, “New paramagnetic tin(IV) complexes based on o-iminoquinone ligands: Synthesis and thermal transformation”, Russ J Coord Chem, 41:7 (2015), 428  crossref
    Citing articles in Google Scholar: Russian citations, English citations
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