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Anion(I-)-π(bisphosphonium)2+ photoluminescence enhanced by [Pt(CN)2(Me-phpy)]-

delete2026-04-01
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PRE
AI
D
Dorota Glosz
G
Guillaume Calvez
T
Toni Eskelinen
B
Belyaev, Andrey
C
Christophe Lescop
I
Igor O. Koshevoy *
R
Robert Podgajny *
DOI:10.1039/d6dt00592fdelete
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Abstract

Abstract

En 中文
A major challenge in luminescent materials is inefficient energy utilization, where a substantial fraction of absorbed energy is dissipated through non-radiative pathways. This limitation can be addressed at the molecular level by rational design of emissive systems. Combining suitable chromophores and/or supporting frameworks allows control over crystal packing, spin-orbit coupling and heavy-atom effects, as well as intermolecular energy transfer, thereby minimizing energy losses and enhancing emission efficiency of phosphorescence. In this context, we present structural and photoluminescence properties of a new hybrid organic-inorganic composite salt [1,4-nap(PMePh2)2][Pt(CN)2(Me-phpy)][I]& centerdot;2MeCN (1) that integrates two previously recognized chromophores: the bisphosphonium-iodide fragment featuring anion-pi interactions and the cycloplatinated anion. Photophysical analysis supported by TD-DFT calculations shows that the emission originates from the triplet charge transfer (CT) excited state 3(iodide -> pi*) (T1) localized within an anion-pi ion pair. Composite 1 exhibits a room temperature phosphorescence quantum yield of 0.19, featuring nearly twofold enhancement compared to the precursor bisphosphonium iodide salt. This is attributed to the synergy of suppressed non-radiative decays and enhanced population of the emissive T1 state via triplet-triplet energy transfer (TTET) from its platinum counterpart. These results were achieved owing to the grafting of the [bisphosphonium]-[I-] supramolecular anion-pi adduct into 1, demonstrating a strategic approach towards improved photoluminescence in molecular materials.
Keywords:
PHOSPHORESCENCE

Journal

Dalton Transactions cover
Dalton Transactions
IF:
3.3
Papers:
3.3W
Citations:
7.5W

Organization

C
cnrs - institute of chemistry (inc)
Scholars:
1.7W
Papers: 1.3W
Citations: 19
U
universite de rennes
Scholars:
1.7W
Papers: 1.3W
Citations: 30
J
jagiellonian university
Scholars:
2.2W
Papers: 1.8W
Citations: 11
I
institut national des sciences appliquees de rennes
Scholars:
573
Papers: 383
Citations: 0
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