| Literature DB >> 28360136 |
Dawei Di1, Alexander S Romanov2, Le Yang1, Johannes M Richter1, Jasmine P H Rivett1, Saul Jones1, Tudor H Thomas1, Mojtaba Abdi Jalebi1, Richard H Friend1, Mikko Linnolahti3, Manfred Bochmann4, Dan Credgington5.
Abstract
Organic light-emitting diodes (OLEDs) promise highly efficient lighting and display technologies. We introduce a new class of linear donor-bridge-acceptor light-emitting molecules, which enable solution-processed OLEDs with near-100% internal quantum efficiency at high brightness. Key to this performance is their rapid and efficient utilization of triplet states. Using time-resolved spectroscopy, we establish that luminescence via triplets occurs within 350 nanoseconds at ambient temperature, after reverse intersystem crossing to singlets. We find that molecular geometries exist at which the singlet-triplet energy gap (exchange energy) is close to zero, so that rapid interconversion is possible. Calculations indicate that exchange energy is tuned by relative rotation of the donor and acceptor moieties about the bridge. Unlike other systems with low exchange energy, substantial oscillator strength is sustained at the singlet-triplet degeneracy point.Entities:
Year: 2017 PMID: 28360136 DOI: 10.1126/science.aah4345
Source DB: PubMed Journal: Science ISSN: 0036-8075 Impact factor: 47.728