Dissemin is shutting down on January 1st, 2025

Published in

Wiley, Advanced Optical Materials, 18(10), 2022

DOI: 10.1002/adom.202200741

Links

Tools

Export citation

Search in Google Scholar

Exceedingly Stable Luminescent Dinuclear Pt(II) Complexes with Ditopic Formamidinate Bridging Ligands for High‐Performance Red and Deep‐Red OLEDs with LT<sub>97</sub>up to 2446 h at 1000 cd m<sup>−2</sup>

This paper was not found in any repository, but could be made available legally by the author.
This paper was not found in any repository, but could be made available legally by the author.

Full text: Unavailable

Green circle
Preprint: archiving allowed
Orange circle
Postprint: archiving restricted
Red circle
Published version: archiving forbidden
Data provided by SHERPA/RoMEO

Abstract

AbstractThe utilization of triplet metal‐metal‐to‐ligand‐charge‐transfer (3MMLCT) emissions of Pt(II) complexes having a large radiative decay rate is a promising strategy to develop efficient red and deep‐red emitters for practical organic light‐emitting diodes (OLEDs). The panel of robust luminescent dinuclear Pt(II) emitters described here features pyridine‐/pyrazine‐fused N‐heterocyclic carbene‐based cyclometalating ligands and ditopic bis‐µ2‐formamidinate bridging ligands. These complexes show intramolecular Pt–Pt distances of 2.85–2.87 Å, are thermally stable up to 446 °C, and display strong red and deep‐red3MMLCT emission (604–689 nm) with emission quantum yields close to unity. Under laboratory conditions, red and deep‐red OLEDs with these complexes show high external quantum efficiencies (up to 21.3%) and prolonged operational lifetimes (LT97up to 2446 h) at an initial luminance of 1000 cd m−2, highlighting the practicality of these dinuclear Pt(II) emitters in organic optoelectronics application.