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Tuning the Photophysical and Excited State Properties of Phosphorescent Iridium(III) Complexes by Polycyclic Unit Substitution.


ABSTRACT: Two novel N-embedded polycyclic units functionalized phosphorescent iridium(III) complexes (Ir-1 and Ir-2) with substituents in different positions have been prepared. Complex Ir-1 bearing the substituent at the 3-position shows a distinct blue shift single-peak emission (524 nm) with a higher luminescence efficiency (ΦPL=42 %) and shorter emission lifetime (τ=282 ns) by comparison with 4-position substitution based complex Ir-2 (ΦPL=23 %, τ=562 ns), which exhibits a dual-peak emission (564 nm and 602 nm), and phosphorescence color can be tuned from green to yellow. In addition, DFT calculations demonstrate that unusual ligand-to-metal charge transfer (3LMCT) excited state property can be found in Ir-2, which is in contrast to metal-to-ligand charge transfer (3MLCT) excited state character in Ir-1. This result can be attribute to strong electron-donating character and 4-position substitution effect of the unit.

SUBMITTER: Wu C 

PROVIDER: S-EPMC6437813 | biostudies-other | 2019 Mar

REPOSITORIES: biostudies-other

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Tuning the Photophysical and Excited State Properties of Phosphorescent Iridium(III) Complexes by Polycyclic Unit Substitution.

Wu Cuicui C   Li Qiuxia Q   Zhang Xinghua X   Shi Chao C   Li Gang G   Wang Mingjie M   Li Kang K   Yuan Aihua A  

ChemistryOpen 20190328 3


Two novel N-embedded polycyclic units functionalized phosphorescent iridium(III) complexes (<b>Ir-1</b> and <b>Ir-2</b>) with substituents in different positions have been prepared. Complex <b>Ir-1</b> bearing the substituent at the 3-position shows a distinct blue shift single-peak emission (524 nm) with a higher luminescence efficiency (Φ<sub>PL</sub>=42 %) and shorter emission lifetime (τ=282 ns) by comparison with 4-position substitution based complex <b>Ir-2</b> (Φ<sub>PL</sub>=23 %, τ=562   ...[more]

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