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Title: | Activation of TADF in Photon Upconverting Crystals of Dinuclear Cu(I)-Iodide Complexes by Ligand Engineering |
Authors: | CHATTERJEE, JOY CHATTERJEE, ABHIJIT TANWAR, RITEEKA PANWARIA, PRAKASH SAIKIA, SAJID Ambhore, Madan D. MANDAL, PANKAJ HAZRA, PARTHA Dept. of Chemistry |
Keywords: | Fluorescence Ligands Phosphorescence Quantum mechanics Quantum yield 2024 2024-JUN-WEEK1 TOC-JUN-2024 |
Issue Date: | Jun-2024 |
Publisher: | American Chemical Society |
Citation: | Journal of Physical Chemistry Letters, 15(23), 6069–6080. |
Abstract: | This work reports that ligand engineering can modulate the triplet harvesting mechanism in iodide-bridged rhombic Cu2I2 complexes. Complex-1, with a smaller Cu–Cu distance, exhibits phosphorescence from 3(M+X)LCT and 3CC states with 66% quantum yield, whereas an increased Cu–Cu distance in complex-2 results in a switch of the emission from phosphorescence to TADF, which occurs via 1/3(M+X)LCT states with 83% quantum yield. The TADF property of complex-2 has been utilized for the fabrication of a pc-LED emitting efficient warm white light. Moreover, the high charge-transfer nature of these complexes leads to the emergence of third-harmonic generation (THG). Interestingly, complex-1 exhibits efficient third-harmonic generation with a χ(3) value of 1.15 × 10–18 m2 V–2 and LIDT value of 14.73 GW/cm2. This work aims to provide a structure–property relationship to achieve effective harvestation of triplet excitons in iodide-bridged rhombic Cu2I2 complexes and their effective utilization in OLED device fabrication and nonlinear photon upconversion processes. |
URI: | https://doi.org/10.1021/acs.jpclett.4c01122 http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/8993 |
ISSN: | 1948-7185 |
Appears in Collections: | JOURNAL ARTICLES |
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