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Evaluation of the activity of samarium(III) complexes with L-aspartic acid, L-glutamic acid, glycine and orto-phenanthroline, as initiators in the polymerization of cyclic carbonates
ArticleAbstract: Catalytic behavior of samarium(III) acetate (SmOAc) and amino acid complexes of samarium(III) tipe:Palabras claves:Autores:Cardozo E.J., Contreras R.R., Contreras-Ramírez J.M., Meribary MonsalveFuentes:scopus(η<sup>6</sup>-Arene)-tricarbonylchromium(0) complexes used in olefin hydroformylation reaction with syngas
ArticleAbstract: Aldehydes are compounds with a great scientific interest in its chemical applications, especially toPalabras claves:Chromium, homogeneous catalysis, Hydroformylation, Olefins, OrganometallicsAutores:Bellandi F., Cañas L., Cardozo-Villalba E., Castro-Ruiz A., Contreras R.R., Fonseca Y., Fontal B., Joel Eduardo Vielma-Puente, Quintero P., Reyes M.Fuentes:scopusAn alternative description of aromaticity in metallabenzenes
ArticleAbstract: Experimental and theoretical studies of metallabenzenes have revealed important differences in theirPalabras claves:Aromaticity, Isolobal Analogies, MetallabenzenesAutores:Contreras R.R., Dávila K.L., Fernando Javier Torres, Fontal B., Luis RinconFuentes:googlescopusIn vitro antimicrobial activity of two dibutyltin(IV) complexes derivatives of kaurenic acids
ArticleAbstract: The antimicrobial activity in vitro of ent-kaurenic, KA [1] and grandiflorenic acid, GA [2], two natPalabras claves:Dibutyltin (IV) complexes, ESCHERICHIA coli, Kaurenic acids, Pseudomonas aeruginosa, Trametes versicolorAutores:Ana Carolina González-Romero, Bellandi F., Carrillo-Rodríguez F., Contreras R.R., Fonseca Y., Fontal B., Joel Eduardo Vielma-Puente, Quintero-Rincón P., Velásquez J.Fuentes:googlescopusStructure and conformational analysis of a bidentate pro-ligand, C <inf>21</inf>H<inf>34</inf>N<inf>2</inf>S<inf>2</inf>, from powder synchrotron diffraction data and solid-state DFTB calculations
ArticleAbstract: The molecular and crystalline structure of ethyl 1′,2′, 3′,4′,4a′,5′,6′,7′- octahydrodispiro[cyclohePalabras claves:Autores:Brunelli M., Contreras R.R., Delgado G.E., Edward E. Ávila, Fitch A.N., Luis Rincon, Mora A.J.Fuentes:googlescopusStudy of catalytic activity on hydrogenation reactions of 1-hexene by RuCl<inf>2</inf>(Py)<inf>4</inf> and RuCl<inf>2</inf>(DMSO)<inf>2</inf>(NC<inf>5</inf>H<inf>4</inf>CO<inf>2</inf>Na)<inf>2</inf> supported on functionalized MCM-48
ArticleAbstract: Two hybrid catalysts were synthesized: (I) from dichlorotetrakis(pyridine)ruthenium(II) [RuCl2(Py)4]Palabras claves:Chemoespecificity, Hybrid catalysts, hydrogenation, Ruthenium complexesAutores:Araque C.A., Bellandi F., Cardozo E.J., Contreras R.R., Fonseca Y., Fontal B., Joel Eduardo Vielma-Puente, José Guillermo Cárdenas Murillo, Reyes M.Fuentes:scopusSustainable and Negative Carbon Footprint Solid-Based NaOH Technology for CO<inf>2</inf>Capture
ArticleAbstract: We report a highly efficient system for CO2 capture and conversion to a "green"solid carbonate thatPalabras claves:Carbon dioxide capture, Circular economy, Energy efficient, Green carbonate, Green chemical, NaOH technology, Negative footprint technologyAutores:Almarza J., Contreras R.R., Luis Rincon, Ruiz C., Sidney C.Fuentes:googlescopusSynthesis, characterization and catalytic hydroformylation of 1-hexene with new hybrid systems: [Co<inf>2</inf>(CO)<inf>6</inf>(PBu<inf>3</inf>)<inf>2</inf>] and [CoCl<inf>2</inf>(PPh<inf>3</inf>)<inf>2</inf>] on functionalized SiO<inf>2</inf>
ArticleAbstract: In this paper we present the synthesis of two new hybrid systems from [Co2(CO)6(PBu3)2] and [CoCl2(PPalabras claves:Cobalt, Functionalization, hybrid systems, Hydroformylation, SUPPORTAutores:Araque C.A., Bellandi F., Cardozo E.J., Contreras R.R., Fontal B., Joel Eduardo Vielma-PuenteFuentes:scopusSynthesis, structural characterization, Hirshfeld surface and DFT calculations of 2-ethyl-2,4,5-trimethyl-2H-1,3-thiazine-6(3H)-thione
ArticleAbstract: 2-Ethyl-2,4,5-trimethyl-2H-1,3-thiazine-6(3H)-thione (1) was synthesized from butanone and carbon diPalabras claves:1,3-thiazine, Crystal structure, DFT calculations, Hirshfeld surface, Hydrogen bonds, Sulfur pro-ligandAutores:Araque C.A., Castillo C., Contreras R.R., Delgado G.E., Delgado-Niño P., Edward E. Ávila, Guillen M., Mora A.J.Fuentes:scopusMolten carbonate fuel cells: a technological perspective and review
ReviewAbstract: Molten carbonate fuel cells (MCFCs) are high-temperature fuel cells that operate with a variety of fPalabras claves:fuel cells, Green Chemistry, MCFC, molten carbonate fuel cell, sodium carbonateAutores:Almarza J., Contreras R.R., Luis RinconFuentes:googlescopus