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  4. Neutral RuII-based emitting materials: A prototypical study on factors governing radiationless transition in phosphorescent metal complexes
 
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Neutral RuII-based emitting materials: A prototypical study on factors governing radiationless transition in phosphorescent metal complexes

Journal
Inorganic Chemistry
Journal Volume
45
Journal Issue
20
Pages
8041-8051
Date Issued
2006
Author(s)
Li, E.Y.
Cheng, Y.-M.
CHENG-CHIH HSU  
Chou, P.-T.
Lee, G.-H.
Lin, I.-H.
Chi, Y.
Liu, C.-S.
DOI
10.1021/ic060066g
URI
http://www.scopus.com/inward/record.url?eid=2-s2.0-33750284396&partnerID=MN8TOARS
http://scholars.lib.ntu.edu.tw/handle/123456789/321195
Abstract
In addition to the metal-centered dd transition that is widely accepted as a dominant radiationless decay channel, other factors may also play important roles in governing the loss of phosphorescence efficiency for heavy-transition-metal complexes. To conduct our investigation, we synthesized two dicarbonylruthenium complexes with formulas [Ru(CO)2(BQ)2] (1) and [Ru(CO)2(DBQ)2] (2), for which the cyclometalated ligands BQ and DBQ denote benzo[h]quinoline and dibenzo[f,h]quinoxaline, respectively. Replacing one CO ligand with a P donor ligand such as PPh2Me and PPhMe2 caused one cyclometalated ligand to undergo a 180 degrees rotation around the central metal atom, giving highly luminous metal complexes [Ru(CO)L(BQ)2] and [Ru(CO)L(DBQ)2], where L = PPh2Me and PPhMe2 (3-6), with emission peaks lambda(max) in the range of 571-656 nm measured in the fluid state at room temperature. It is notable that the S0-T1 energy gap for both 1 and 2 is much higher than that of 3-6, but the corresponding phosphorescent spectral intensity is much weaker. Using these cyclometalated Ru metal complexes as a prototype, our experimental results and theoretical analysis draw attention to the fact that, for complexes 1 and 2, the weaker spin-orbit coupling present within these molecules reduces the T1-S0 interaction, from which the thermally activated radiationless deactivation may take place. This, in combination with the much smaller 3MLCT contribution than that observed in 3-6, rationalizes the lack of room-temperature emission for complexes 1 and 2.
SDGs

[SDGs]SDG7

Type
journal article

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