0000000000653610

AUTHOR

Javier García-tojal

Structure, magnetic properties and nuclease activity of pyridine-2-carbaldehyde thiosemicarbazonecopper(II) complexes.

New complexes of formulae [Cu(HL 2 )(H 2 O)(NO 3 )](NO 3 ) ( 1 ), [{Cu(L 1 )(tfa)} 2 ] ( 2 ), [{Cu(L 1 )} 2 (pz)](ClO 4 ) 2 ( 3 ) and {[{Cu(L 1 )} 2 (dca)](ClO 4 )} n ( 4 ), where HL 1  = pyridine-2-carbaldehyde thiosemicarbazone, HL 2  = pyridine-2-carbaldehyde 4 N -methylthiosemicarbazone, Htfa = trifluoroacetic acid (CF 3 COOH), pz = pyrazine (C 4 H 4 N 2 ) and dca = dicyanamide [N(CN) 2 ] − , have been synthesized and characterized. The crystal structures of these compounds are built up of monomers ( 1 ), dinuclear entities with the metal centers bridged through the non-thiosemicarbazone coligand ( 2 and 3 ) and 1D chains of dimers ( 4 ). In all the cases, square–pyramidal copper(II) io…

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Revisiting the thiosemicarbazonecopper(II) reaction with glutathione. Activity against colorectal carcinoma cell lines.

Thiosemicarbazones (TSCs), and their copper derivatives, have been extensively studied mainly due to the potential applications as antitumor compounds. A part of the biological activity of the TSC-CuII complexes rests on their reactivity against cell reductants, as glutathione (GSH). The present paper describes the structure of the [Cu(PTSC)(ONO2)]n compound (1) (HPTSC =pyridine-2-carbaldehyde thiosemicarbazone) and its spectroscopic and magnetic properties. ESI studies performed on the reaction of GSH with 1 and the analogous [{Cu (PTSC*)(ONO2)}2] derivative (2, HPTSC* =pyridine-2-carbaldehyde 4N-methylthiosemicarbazone) show the absence of peaks related with TSC-Cu-GSH species. However GS…

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Desulfurization processes of thiosemicarbazonecopper(ii) derivatives in acidic and basic aqueous media

This work provides structural evidence for different desulfurization processes in aqueous solutions of [CuL]+ derivatives (HL = pyridine-2-carbaldehyde thiosemicarbazone). Structural resolution has been achieved for the [{CuL(SH)}2] (1), [CuLCl]2[Cu(pic)2] (pic− = picolinato, pyridine-2-carboxilato) (2) and [Cu(HL)(NCS)](NO3) (4) compounds, together with a derivative of 4 with formula [Cu(HL)(NCS)][Cu(HL)(NCS)0.72(NO3)0.28](NO3)2 (5), whose HS−, pic− and NCS− ligands come from thiosemicarbazone breakage. The behaviour of the [CuL]+ species in basic aqueous solutions or water under reflux has been compared with that exhibited by iron(III), cobalt(III), zinc(II) and lead(II) derivatives of th…

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(1,3,4‐Oxadiazole)copper(II) Compounds: Dimensionality, Magnetism and Nuclease Activity

The work presented here describes the synthesis of new copper(II) complexes derived from 2-amino-5-(pyridin-2-yl)-1,3,4-oxadiazole (L1) and 2-methylamino-5-(pyridin-2-yl)-1,3,4-oxadiazole (L2) which also incorporate azido (N3 -), thiocyanato (NCS-), cyanato (NCO-), dicyanamido [N(CN)2 -, dca] and malonato (C3H2O4 2-, mal) coligands. Structures of the [Cu(L2)(mal)(H2O)]·2H 2O(1), [{Cu(L2)(mal)}2] (2), [Cu(L 2)2-(NCS)2] (3), [Cu(L1)(NCS) 2]n (4) and [{Cu(L2)}2(dca) 2](ClO4)2·2H2O (5) compounds show the dependence of the dimensionality on parameters such as the type of oxadiazole and coligand utilised, solvents or reaction times. In this sense, 1 and 3 are mononuclear complexes, 2 contains cen…

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CCDC 930871: Experimental Crystal Structure Determination

Related Article: Rubén Gil-García, Roberto Fraile, Bruno Donnadieu, Gotzon Madariaga, Vaidas Januskaitis, Jordi Rovira, Lucía González, Joaquín Borrás, Francisco Javier Arnáiz, Javier García-Tojal|2013|New J.Chem.|37|3568|doi:10.1039/C3NJ00321C

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CCDC 930872: Experimental Crystal Structure Determination

Related Article: Rubén Gil-García, Roberto Fraile, Bruno Donnadieu, Gotzon Madariaga, Vaidas Januskaitis, Jordi Rovira, Lucía González, Joaquín Borrás, Francisco Javier Arnáiz, Javier García-Tojal|2013|New J.Chem.|37|3568|doi:10.1039/C3NJ00321C

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CCDC 1424631: Experimental Crystal Structure Determination

Related Article: Javier García-Tojal, Rubén Gil-García, Víctor Ivo Fouz, Gotzon Madariaga, Luis Lezama, María S. Galletero, Joaquín Borrás, Friederike I. Nollmann, Carlos García-Girón, Raquel Alcaraz, Mónica Cavia-Saiz, Pilar Muñiz, Òscar Palacios, Katia G. Samper, Teófilo Rojo|2018|J.Inorg.Biochem.|180|69|doi:10.1016/j.jinorgbio.2017.12.005

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CCDC 930874: Experimental Crystal Structure Determination

Related Article: Rubén Gil-García, Roberto Fraile, Bruno Donnadieu, Gotzon Madariaga, Vaidas Januskaitis, Jordi Rovira, Lucía González, Joaquín Borrás, Francisco Javier Arnáiz, Javier García-Tojal|2013|New J.Chem.|37|3568|doi:10.1039/C3NJ00321C

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CCDC 930873: Experimental Crystal Structure Determination

Related Article: Rubén Gil-García, Roberto Fraile, Bruno Donnadieu, Gotzon Madariaga, Vaidas Januskaitis, Jordi Rovira, Lucía González, Joaquín Borrás, Francisco Javier Arnáiz, Javier García-Tojal|2013|New J.Chem.|37|3568|doi:10.1039/C3NJ00321C

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CCDC 930875: Experimental Crystal Structure Determination

Related Article: Rubén Gil-García, Roberto Fraile, Bruno Donnadieu, Gotzon Madariaga, Vaidas Januskaitis, Jordi Rovira, Lucía González, Joaquín Borrás, Francisco Javier Arnáiz, Javier García-Tojal|2013|New J.Chem.|37|3568|doi:10.1039/C3NJ00321C

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