| Literature DB >> 28248442 |
Amal El Nahhas1, Muhammad Anwar Shameem2, Pavel Chabera1, Jens Uhlig1, Andreas Orthaber2.
Abstract
The development of new materials for solar-to-energy conversion should consider stability, ease of fabrication, and beneficial photophysical properties. In this context, a set of novel π-conjugated building blocks, with phospha- and arsaalkenes possessing a unique dithienyl annulated heterofulvenoid core, have been prepared as air- and moisture-stable sensitizers. These compounds unify electron-donor and -acceptor moieties, making them potential candidates for light-harvesting applications. Optical characterization of these systems was performed by steady-state and time-resolved absorption spectroscopy, supported by time-dependent DFT calculations. Tuning of the optical properties of these systems can be achieved by varying the pnictogen element at the bridgehead position, giving a bathochromic shift of ≈40 nm and coordinating the phosphaalkene towards gold AuI centers. The latter results in a ≈2000-fold extension of the ≈10 ps lifetime of uncoordinated systems well into the ns regime.Entities:
Keywords: arsaalkene; electrochemistry; main group elements; phosphaalkene; pnictogens; time-resolved spectroscopy
Year: 2017 PMID: 28248442 DOI: 10.1002/chem.201700917
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236