Unraveling the Up-Conversion Mechanism Involved in the Intense Red Emission of a Mononuclear ErIII Complex
Abstract
The scarcity of up-conversion (UC) luminescence studies involving LnIII molecular complexes mainly arises from the challenge of designing a coordination sphere that minimizes the interactions of the metal centers with high-energy oscillators. By using a combination of reported strategies to reduce these interactions, we synthesized and characterized a mononuclear complex, Er(tta)3(bipy) (tta: thenoyltrifluoroacetone; bipy: 2,2 '-bipyridine) (Er-TB). Upon 980 nm laser excitation at room temperature, this complex gives rise to the challenging up-converted red (4F9/2 -> 4I15/2) band, besides the bluish-green (2H11/2 -> 4I15/2) and green (4S3/2 -> 4I15/2) ones, as well as a downshifted NIR (4I13/2 -> 4I15/2) emission. Interestingly, a high intensity of the red emission band and unprecedented luminescence lifetime values (448 mu s for green and 775 mu s for red emission) were achieved. A detailed analysis of the available data allows us to unravel the probable UC mechanism, which results in a dominant energy transfer up-conversion (ETU) mechanism via three-photon absorption, while a cross-relaxation (CR) process for the intense red emission is proposed. Besides affording a design strategy to achieve UC luminescence in ErIII complexes, this study opens the door to the design of other lanthanide-based molecular UC systems, expanding the scope of these materials in the UC luminescence field.
Más información
Título según WOS: | ID WOS:001505163300001 Not found in local WOS DB |
Título de la Revista: | CHEMISTRY-AN ASIAN JOURNAL |
Editorial: | WILEY-V C H VERLAG GMBH |
Fecha de publicación: | 2025 |
DOI: |
10.1002/asia.202500538 |
Notas: | ISI |