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Nature Research, Nature Communications, 1(12), 2021

DOI: 10.1038/s41467-021-26927-z

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Charging and ultralong phosphorescence of lanthanide facilitated organic complex

Journal article published in 2021 by Waygen Thor ORCID, Yue Wu, Lei Wang, Yonghong Zhang ORCID, Peter A. Tanner ORCID, Ka-Leung Wong
This paper is made freely available by the publisher.
This paper is made freely available by the publisher.

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Abstract

AbstractEmission from the triplet state of an organo-lanthanide complex is observed only when the energy transfer to the lanthanide ion is absent. The triplet state lifetime under cryogenic conditions for organo-lanthanide compounds usually ranges up to tens of milliseconds. The compoundLaL1(TTA)3reported herein exhibits 77 K phosphorescence observable by the naked eye for up to 30 s. Optical spectroscopy, density functional theory (DFT) and time-dependent DFT techniques have been applied to investigate the photophysical processes of this compound. In particular, on-off continuous irradiation cycles reveal a charging behaviour of the emission which is associated with triplet-triplet absorption because it shows a shorter rise lifetime than the corresponding decay lifetime and it varies with illumination intensity. The discovery of the behaviour of this compound provides insight into important photophysical processes of the triplet state of organo-lanthanide systems and may open new fields of application such as data encryption, anti-counterfeiting and temperature switching.