Intermolecular Charge-Transfer Luminescence by Self-Assembly of Pyridinium Luminophores in Solutions
ChemistryOpen 2021
K Leduskrasts, Edgars Sūna

Designing a luminophore for application both in solution and in the solid state is a highly challenging task given the distinct nature of intermolecular interactions in these phases. In this context, we demonstrate that self-assembly of non-emissive charged pyridinium luminophores enables luminescence in solutions through a mechanism that is characteristic for the crystal state. Specifically, protonation of pyridine luminophore subunits in a solution promotes oligomer formation through intermolecular π+-π interactions, leading to an intermolecular charge-transfer type luminescence. The luminescence turn-on by protonation is utilized for a highly efficient solution-state luminescent sensing of hydrogen chloride and sulfonic acids (TfOH, TsOH and MsOH) with detection limits spanning the range from 0.06 to 0.33 ppm. The protonation followed by self-assembly results in a bathochromic shift of the emission from 420 nm to 550 nm.


Keywords
aggregation-induced emission | intermolecular interactions | luminescent property transfer | self-assembly | sensors
DOI
10.1002/open.202100191
Hyperlink
https://chemistry-europe.onlinelibrary.wiley.com/doi/10.1002/open.202100191

Leduskrasts, K., Sūna, E. Intermolecular Charge-Transfer Luminescence by Self-Assembly of Pyridinium Luminophores in Solutions. ChemistryOpen, 2021, Vol. 10, No. 10, pp.1081-1086. ISSN 2191-1363. Available from: doi:10.1002/open.202100191

Publication language
English (en)
The Scientific Library of the Riga Technical University.
E-mail: uzzinas@rtu.lv; Phone: +371 28399196