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Peter Rapta

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Articles 66
Citations 214
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Recent Articles
1.
Pedersen V, Zalibera M, Lirette F, Ouellette J, Lanza A, Fernandez I, et al.
Angew Chem Int Ed Engl . 2024 Dec; e202422275. PMID: 39715025
The introduction of 4,5-dihydroazuleno[2,1,8-ija]azulene as a central core between two 1,4-dithiafulvene (DTF) units provides a novel class of extended tetrathiafulvalene (TTF) electron donors. Herein we present the synthesis of such...
2.
Besleaga I, Fesenko A, Paul A, Sljukic B, Rapta P, Pombeiro A, et al.
Dalton Trans . 2024 Aug; 53(38):15826-15841. PMID: 39189403
Design and development of novel, low-cost and efficient electrocatalysts for oxygen evolution reaction (OER) in alkaline media is crucial for lowering the reaction overpotential and thus decreasing the energy input...
3.
Besleaga I, Raptova R, Stoica A, Milunovic M, Zalibera M, Bai R, et al.
Dalton Trans . 2024 Jul; 53(29):12349-12369. PMID: 38989784
Quite recently we discovered that copper(II) complexes with isomeric morpholine-thiosemicarbazone hybrid ligands show good cytotoxicity in cancer cells and that the molecular target responsible for this activity might be tubulin....
4.
Milunovic M, Ohui K, Besleaga I, Petrasheuskaya T, Domotor O, Enyedy E, et al.
J Med Chem . 2024 May; 67(11):9069-9090. PMID: 38771959
The development of copper(II) thiosemicarbazone complexes as potential anticancer agents, possessing dual functionality as inhibitors of R2 ribonucleotide reductase (RNR) and tubulin polymerization by binding at the colchicine site, presents...
5.
Jelemenska I, Zalibera M, Rapta P, Dobrov A, Arion V, Bucinsky L
Theor Chem Acc . 2024 Mar; 143(4):26. PMID: 38495857
Supplementary Information: The online version contains supplementary material available at 10.1007/s00214-024-03100-5.
6.
Granhoj J, Zalibera M, Malcek M, Pedersen V, Hillers-Bendtsen A, Mikkelsen K, et al.
Chemistry . 2023 Nov; 30(5):e202302688. PMID: 37930277
In one-dimensional polycyclic aromatic hydrocarbons (PAHs) containing five- and six-membered rings fused together, one key question is whether the structures possess a quinoidal or aromatic diradical character. Here, we generate...
7.
Gleeson R, Andersen C, Rapta P, Machata P, Christensen J, Hammerich O, et al.
Int J Mol Sci . 2023 Feb; 24(4). PMID: 36834859
A test set of -tetrasubstituted -phenylenediamines are experimentally explored using ESR (electron spin resonance) spectroscopy and analysed from a computational standpoint thereafter. This computational study aims to further aid structural...
8.
Kuznetcova I, Bacher F, Alfadul S, Tham M, Ang W, Babak M, et al.
Inorg Chem . 2022 Jun; 61(26):10167-10181. PMID: 35713376
Indolo[3,2-][1]benzazepines (paullones), indolo[3,2-][2]benzazepines, and indolo[2,3-][2]benzazepines (latonduines) are isomeric scaffolds of current medicinal interest. Herein, we prepared a small library of novel indolo[3,2-][2]benzazepine-derived ligands - and copper(II) complexes -. All compounds...
9.
Dobrov A, Darvasiova D, Zalibera M, Bucinsky L, Jelemenska I, Rapta P, et al.
Dalton Trans . 2022 Mar; 51(13):5151-5167. PMID: 35266945
Diastereomeric dinickel(II) complexes with bis-octaazamacrocyclic 15-membered ligands [Ni(L1-3-L1-3)Ni] (4-6) have been prepared by oxidative dehydrogenation of nickel(II) complexes NiL1-3 (1-3) derived from 1,2- and 1,3-diketones and -methylisothiocarbohydrazide. The compounds were...
10.
Stepanenko I, Mizetskyi P, Orlowska E, Bucinsky L, Zalibera M, Venosova B, et al.
Inorg Chem . 2021 Dec; 61(2):950-967. PMID: 34962391
The ruthenium nitrosyl moiety, {RuNO}, is important as a potential releasing agent of nitric oxide and is of inherent interest in coordination chemistry. Typically, {RuNO} is found in mononuclear complexes....