Dipole-Mediated Rectification of Intramolecular Photoinduced Charge Separation and Charge Recombination

作者:Bao Duoduo; Upadhyayula Srigokul; Larsen Jillian M; Xia Bing; Georgieva Boriana; Nunez Vicente; Espinoza Eli M; Hartman Joshua D; Wurch Michelle; Chang Andy; Lin Chung Kuang; Larkin Jason; Vasquez Krystal; Beran Gregory J O*; Vullev Valentine I
来源:Journal of the American Chemical Society, 2014, 136(37): 12966-12973.
DOI:10.1021/ja505618n

摘要

Controlling charge transfer at a molecular scale is critical for efficient light harvesting, energy conversion, and nanoelectronics. Dipole-polarization electrets, the electrostatic analogue of magnets, provide a means for %26quot;steering%26quot; electron transduction via the local electric fields generated by their permanent electric dipoles. Here, we describe the first demonstration of the utility of anthranilamides, moieties with ordered dipoles, for controlling intramolecular charge transfer. Donor-acceptor dyads, each containing a single anthranilamide moiety, distinctly rectify both the forward photoinduced electron transfer and the subsequent charge recombination. Changes in the observed charge-transfer kinetics as a function of media polarity were consistent with the anticipated effects of the anthranilamide molecular dipoles on the rectification. The regioselectivity of electron transfer and the molecular dynamics of the dyads further modulated the observed kinetics, particularly for charge recombination. These findings reveal the underlying complexity of dipole-induced effects on electron transfer and demonstrate unexplored paradigms for molecular rectifiers.

  • 出版日期2014-9-17