| Literature DB >> 33856801 |
Marco Paolino1, Tommaso Giovannini2, Madushanka Manathunga3, Loredana Latterini4, Giulia Zampini4, Robin Pierron5, Jérémie Léonard5, Stefania Fusi1, Gianluca Giorgi1, Germano Giuliani1, Andrea Cappelli1, Chiara Cappelli2, Massimo Olivucci1,3.
Abstract
The experimental investigation of the unidirectional motion characterizing the photoisomerization of single-molecule rotary motors requires accessible lab prototypes featuring an electronic circular dichroism (ECD) signal that is sensitive to the geometrical and electronic changes occurring during an ultrafast reactive process. Here we report a combined experimental/computational study of a candidate obtained via the asymmetrization of a light-driven biomimetic molecular switch. We show that the achieved motor has an ECD band that is remarkably sensitive to the isomerization motion, and it is therefore suitable for time-resolved ECD studies. However, we also find that, unexpectedly, the synthesized motor isomerizes on a time scale longer than the subpicosecond time measured for the achiral parent, a result that points to alternative candidates conserving a high reaction speed.Year: 2021 PMID: 33856801 DOI: 10.1021/acs.jpclett.1c00526
Source DB: PubMed Journal: J Phys Chem Lett ISSN: 1948-7185 Impact factor: 6.475