TY - JOUR
T1 - Inner reorganization during the radical-biradical transition in a nor-β-lapachone derivative possessing two redox centers
AU - Hernández, Dulce María
AU - De Moura, Maria Aline B.F.
AU - Valencia, Drochss Pettry
AU - González, Felipe J.
AU - González, Ignacio
AU - De Abreu, Fabiane C.
AU - Da Silva Júnior, Eufrĝnio N.
AU - Ferreira, Vitor F.
AU - Pinto, Antônio Ventura
AU - Goulart, Marilia O.F.
AU - Frontana, Carlos
PY - 2008
Y1 - 2008
N2 - In this work, the electrochemical behaviour of an antitumoral nitro o-quinone derivative obtained from 3-bromo-nor-β-lapachone was studied. Cyclic voltammetric experiments, in acetonitrile solution, revealed that both quinone and nitro functions are reduced independently as quasi-reversible one-electron transfer processes in this order. Depending on the reduction potential, a radical anion or a biradical dianion is obtained. The formation of these paramagnetic species was confirmed by performing in situ Electrochemical-Electron Spin Resonance (E-ESR) experiments. Analysis of the kinetics of electron transfer associated to those electron uptake processes, in terms of the Marcus-Hush-Levich model, revealed differences in the reorganization energy (λ(k)) for both steps (λ(I): 1.07-1.11 eV; λ(II): 1.21-1.30 eV). By evaluating the conformations of the radical and biradical systems by calculations at the BLYP//TZVP level of theory, it was found that the inner component, for the second reduction process (λ(II)) was approximately 72% of λ(II), reflecting modifications in the molecular structure during the radical anion-biradical dianion transition. This change is also reflected in the differences presented by line widths of the ESR signals of both electrogenerated radical and diradical species.
AB - In this work, the electrochemical behaviour of an antitumoral nitro o-quinone derivative obtained from 3-bromo-nor-β-lapachone was studied. Cyclic voltammetric experiments, in acetonitrile solution, revealed that both quinone and nitro functions are reduced independently as quasi-reversible one-electron transfer processes in this order. Depending on the reduction potential, a radical anion or a biradical dianion is obtained. The formation of these paramagnetic species was confirmed by performing in situ Electrochemical-Electron Spin Resonance (E-ESR) experiments. Analysis of the kinetics of electron transfer associated to those electron uptake processes, in terms of the Marcus-Hush-Levich model, revealed differences in the reorganization energy (λ(k)) for both steps (λ(I): 1.07-1.11 eV; λ(II): 1.21-1.30 eV). By evaluating the conformations of the radical and biradical systems by calculations at the BLYP//TZVP level of theory, it was found that the inner component, for the second reduction process (λ(II)) was approximately 72% of λ(II), reflecting modifications in the molecular structure during the radical anion-biradical dianion transition. This change is also reflected in the differences presented by line widths of the ESR signals of both electrogenerated radical and diradical species.
UR - http://www.scopus.com/inward/record.url?scp=52649136123&partnerID=8YFLogxK
U2 - 10.1039/b806271d
DO - 10.1039/b806271d
M3 - Article
C2 - 18802650
AN - SCOPUS:52649136123
SN - 1477-0520
VL - 6
SP - 3414
EP - 3420
JO - Organic and Biomolecular Chemistry
JF - Organic and Biomolecular Chemistry
IS - 18
ER -