Enhancement of the Luminescent Efficiency in Carbene-Au(I)-Aryl Complexes by the Restriction of Renner–Teller Distortion and Bond Rotation
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https://figshare.com/articles/dataset/Enhancement_of_the_Luminescent_Efficiency_in_Carbene-Au_sup_I_sup_-Aryl_Complexes_by_the_Restriction_of_Renner_Teller_Distortion_and_Bond_Rotation/11994114
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A series of (carbene)Au(I)(aryl) complexes are reported. The nature of the lowest excited state in these complexes changes character from metal-to-ligand charge transfer (MLCT) to interligand charge transfer (ICT) with increasing electron-donating strength of the aryl ligand. Complexes that have the MLCT lowest excited state undergo a Renner–Teller bending distortion upon excitation. Such a distortion leads to a large rate of nonradiative decay, on the order of 108 s–1. Renner–Teller-based nonradiative decay does not occur in chromophores with an ICT emissive state. Introducing a julolidine moiety and ortho-methyl substituents to the aryl group makes the molecule rigid and hinders the rotation along the Au–Caryl-coordinate bond. Consequently, the nonradiative decay rates of these ICT emitters are decreased and become lower than the radiative decay rate constants (kr = 105 s–1). Thus, high-luminescent efficiencies (ΦPL = 0.61 and 0.77) along with short lifetimes (τ EST –1) in these emitters.
创建时间:
2020-03-02



