Issue 27, 2024

Photoswitchable luminescent lanthanide complexes controlled and interrogated by four orthogonal wavelengths of light

Abstract

Optical information storage requires careful control of excitation and emission wavelengths in a reversible and orthogonal manner to enable efficient reading, writing, and erasing of information. Photochromic systems, in which a photoswitch is typcially coupled to an emissive organic fluorophore, have much promise in this regard. However, these suffer from considerable spectral overlap between the switch and fluorophore, such that their emissive and photoswitchable properties are not orthogonal. Here, we overcome this limitation by coupling visible/NIR emissive lanthanide complexes with molecular photoswitches, enabling reversible and orthogonal photoswitching with visible light. Crucially, photoswitching does not lead to sensitised emission from the lanthanide, while excitation of the lanthanide does not induce photoswitching, enabling the state of the system to be probed without perturbation of the switch. This opens up the possibility of developing multi-colour read–write methods for information storage using emissive photoswitches.

Graphical abstract: Photoswitchable luminescent lanthanide complexes controlled and interrogated by four orthogonal wavelengths of light

Supplementary files

Article information

Article type
Paper
Submitted
31 May 2024
Accepted
15 Jun 2024
First published
17 Jun 2024
This article is Open Access
Creative Commons BY license

Phys. Chem. Chem. Phys., 2024,26, 18683-18691

Photoswitchable luminescent lanthanide complexes controlled and interrogated by four orthogonal wavelengths of light

C. H. Simms, V. R. M. Nielsen, T. J. Sørensen, S. Faulkner and M. J. Langton, Phys. Chem. Chem. Phys., 2024, 26, 18683 DOI: 10.1039/D4CP02243B

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