Electrochemical properties of some gold(III) complexes with (S,S)-R(2)edda-type ligands
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2016
Authors
Pantelić, Nebojša
Stanković, Dalibor

Zmejkovski, Bojana B.
Kaludjerović, Goran N.

Sabo, Tibor J.

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Oxidation-reduction properties of eleven gold(III) complexes with (S,S)-R(2)edda-type ligands was studied by cyclic and differential pulse voltammetry in DMSO. Series I: [AuCl2{(S,S)-R(2)eddip}]PF6, (S,S)-eddip = (S,S)-ethylenediamine-N,N'-di-2-propanoate, R = n-butyl, n-pentyl, isobutyl, isoamyl, cyclopentyl, 1-5; II: [AuCl2{(S,S)-R(2)eddch}]PF6, (S,S)-eddch = (S,S)-ethylenediamine-N,N'-di-2-(3-cyclohexyl)propanoate, R = methyl, ethyl, n-propyl, n-butyl, isobutyl, isoamyl, 6-11. Voltammograms in DMSO showed two successive irreversible reduction steps, where Au-I species were the final reduction product. Reduction potential values are in range from 116 to 156 mV (Ep(1)) and -520 to -572 mV (Ep(2)) for Series I and from 148 to 228 mV (Ep(1)) and -569 to -638 mV (Ep(2)) for Series II. In general, slightly easier reduction of complexes belonging to Series I (higher cytotoxicity) could be due to less steric hindrance around the gold center. Reduction potentials and anticancer activity are ...not in correlation.
Keywords:
gold(III) complexes / R(2)edda-type ligands / anticancer activity / reduction potential / voltammetrySource:
International Journal of Electrochemical Science, 2016, 11, 2, 1162-1171Publisher:
- Electrochemical Science Group, Beograd
Funding / projects:
- Rational design and synthesis of biologically active and coordination compounds and functional materials, relevant for (bio)nanotechnology (RS-172035)
- Application of advanced oxidation processes and nanostructured oxide materials for the removal of pollutants from the environment, development and optimisation of instrumental techniques for efficiency monitoring (RS-172030)
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Poljoprivredni fakultetTY - JOUR AU - Pantelić, Nebojša AU - Stanković, Dalibor AU - Zmejkovski, Bojana B. AU - Kaludjerović, Goran N. AU - Sabo, Tibor J. PY - 2016 UR - http://aspace.agrif.bg.ac.rs/handle/123456789/4154 AB - Oxidation-reduction properties of eleven gold(III) complexes with (S,S)-R(2)edda-type ligands was studied by cyclic and differential pulse voltammetry in DMSO. Series I: [AuCl2{(S,S)-R(2)eddip}]PF6, (S,S)-eddip = (S,S)-ethylenediamine-N,N'-di-2-propanoate, R = n-butyl, n-pentyl, isobutyl, isoamyl, cyclopentyl, 1-5; II: [AuCl2{(S,S)-R(2)eddch}]PF6, (S,S)-eddch = (S,S)-ethylenediamine-N,N'-di-2-(3-cyclohexyl)propanoate, R = methyl, ethyl, n-propyl, n-butyl, isobutyl, isoamyl, 6-11. Voltammograms in DMSO showed two successive irreversible reduction steps, where Au-I species were the final reduction product. Reduction potential values are in range from 116 to 156 mV (Ep(1)) and -520 to -572 mV (Ep(2)) for Series I and from 148 to 228 mV (Ep(1)) and -569 to -638 mV (Ep(2)) for Series II. In general, slightly easier reduction of complexes belonging to Series I (higher cytotoxicity) could be due to less steric hindrance around the gold center. Reduction potentials and anticancer activity are not in correlation. PB - Electrochemical Science Group, Beograd T2 - International Journal of Electrochemical Science T1 - Electrochemical properties of some gold(III) complexes with (S,S)-R(2)edda-type ligands EP - 1171 IS - 2 SP - 1162 VL - 11 UR - https://hdl.handle.net/21.15107/rcub_cherry_2060 ER -
@article{ author = "Pantelić, Nebojša and Stanković, Dalibor and Zmejkovski, Bojana B. and Kaludjerović, Goran N. and Sabo, Tibor J.", year = "2016", abstract = "Oxidation-reduction properties of eleven gold(III) complexes with (S,S)-R(2)edda-type ligands was studied by cyclic and differential pulse voltammetry in DMSO. Series I: [AuCl2{(S,S)-R(2)eddip}]PF6, (S,S)-eddip = (S,S)-ethylenediamine-N,N'-di-2-propanoate, R = n-butyl, n-pentyl, isobutyl, isoamyl, cyclopentyl, 1-5; II: [AuCl2{(S,S)-R(2)eddch}]PF6, (S,S)-eddch = (S,S)-ethylenediamine-N,N'-di-2-(3-cyclohexyl)propanoate, R = methyl, ethyl, n-propyl, n-butyl, isobutyl, isoamyl, 6-11. Voltammograms in DMSO showed two successive irreversible reduction steps, where Au-I species were the final reduction product. Reduction potential values are in range from 116 to 156 mV (Ep(1)) and -520 to -572 mV (Ep(2)) for Series I and from 148 to 228 mV (Ep(1)) and -569 to -638 mV (Ep(2)) for Series II. In general, slightly easier reduction of complexes belonging to Series I (higher cytotoxicity) could be due to less steric hindrance around the gold center. Reduction potentials and anticancer activity are not in correlation.", publisher = "Electrochemical Science Group, Beograd", journal = "International Journal of Electrochemical Science", title = "Electrochemical properties of some gold(III) complexes with (S,S)-R(2)edda-type ligands", pages = "1171-1162", number = "2", volume = "11", url = "https://hdl.handle.net/21.15107/rcub_cherry_2060" }
Pantelić, N., Stanković, D., Zmejkovski, B. B., Kaludjerović, G. N.,& Sabo, T. J.. (2016). Electrochemical properties of some gold(III) complexes with (S,S)-R(2)edda-type ligands. in International Journal of Electrochemical Science Electrochemical Science Group, Beograd., 11(2), 1162-1171. https://hdl.handle.net/21.15107/rcub_cherry_2060
Pantelić N, Stanković D, Zmejkovski BB, Kaludjerović GN, Sabo TJ. Electrochemical properties of some gold(III) complexes with (S,S)-R(2)edda-type ligands. in International Journal of Electrochemical Science. 2016;11(2):1162-1171. https://hdl.handle.net/21.15107/rcub_cherry_2060 .
Pantelić, Nebojša, Stanković, Dalibor, Zmejkovski, Bojana B., Kaludjerović, Goran N., Sabo, Tibor J., "Electrochemical properties of some gold(III) complexes with (S,S)-R(2)edda-type ligands" in International Journal of Electrochemical Science, 11, no. 2 (2016):1162-1171, https://hdl.handle.net/21.15107/rcub_cherry_2060 .