| Literature DB >> 31740761 |
Jason D Braun1, Issiah B Lozada1, Charles Kolodziej2, Clemens Burda2, Kelly M E Newman3, Johan van Lierop3,4, Rebecca L Davis1, David E Herbert5,6.
Abstract
Replacing current benchmark rare-element photosensitizers with ones based on abundant and low-cost metals such as iron would help facilitate the large-scale implementation of solar energy conversion. To do so, the ability to extend the lifetimes of photogenerated excited states of iron complexes is critical. Here, we present a sensitizer design in which iron(II) centres are supported by frameworks containing benzannulated phenanthridine and quinoline heterocycles paired with amido donors. These complexes exhibit panchromatic absorption and nanosecond charge-transfer excited state lifetimes, enabled by the combination of vacant, energetically accessible heterocycle-based acceptor orbitals and occupied molecular orbitals destabilized by strong mixing between amido nitrogen atoms and iron. This finding shows how ligand design can extend metal-to-ligand charge-transfer-type excited state lifetimes of iron(II) complexes into the nanosecond regime and expand the range of potential applications for iron-based photosensitizers.Entities:
Year: 2019 PMID: 31740761 DOI: 10.1038/s41557-019-0357-z
Source DB: PubMed Journal: Nat Chem ISSN: 1755-4330 Impact factor: 24.427