| Literature DB >> 31901181 |
Hui Li1, Huanhuan Li1, Wu Wang1, Ye Tao1, Shuang Wang1, Qingqing Yang1, Yunbo Jiang1, Chao Zheng1, Wei Huang1,2, Runfeng Chen1.
Abstract
Purely organic materials showing room temperature phosphorescence (RTP) and ultralong RTP (OURTP) have recently attracted much attention. However, it is challenging to integrate circularly polarized luminescence (CPL) into RTP/OURTP. Here, we show a strategy to realize CPL-active OURTP (CP-OURTP) by binding an achiral phosphor group directly to the chiral center of an ester chain. Engineering of this flexible chiral chain enables efficient chirality transfer to carbazole aggregates, resulting in strong CP-OURTP with a lifetime of over 0.6 s and dissymmetry factor of 2.3×10-3 after the conformation regulation upon photo-activation. The realized CP-OURTP is thus stable at room temperature but can be deactivated quickly at 50 °C to CP-RTP with high CPL stability during the photo-activation/thermal-deactivation cycles. Based on this extraordinary photo/thermal-responsive and highly reversible CP-OURTP/RTP, a CPL-featured lifetime-encrypted combinational logic device has been successfully established.Entities:
Keywords: aggregation coupling engineering; circularly polarized luminescence; logic device; organic ultralong room temperature phosphorescence; stimuli-responsive
Year: 2020 PMID: 31901181 DOI: 10.1002/anie.201915164
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336