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Turn on of room temperature phosphorescence of donor-acceptor-donor type compounds via transformation of excited states by rigid hosts for oxygen sensing

  • Levani Skhirtladze
  • , Karolis Leitonas
  • , Audrius Bucinskas
  • , Kai Lin Woon
  • , Dmytro Volyniuk
  • , Rasa Keruckienė
  • , Malek Mahmoudi
  • , Mieczyslaw Lapkowski
  • , Azhar Ariffin
  • , Juozas V. Grazulevicius
  • Kaunas University of Technology
  • University of Malaya
  • Polish Academy of Sciences

Wyniki badań: Wkład do czasopismaArtykułrecenzja

26 Cytowania z bazy Scopus

Abstrakt

A series of compounds with the different donor moieties (phenothiazine, phenoxazine and acridine) and 1,4-difluorobenzene unit as the acceptor were developed for optical sensors of oxygen. Among three new compounds, oxygen sensing ability of one compound 10,10'-(2,5-difluoro-1,4-phenylene)bis(10 H-phenothiazine) (2PS-2FPh) exhibiting strong room-temperature phosphorescence in rigid matrix Zeonex shows high sensitivity to low concentration of oxygen (<0.1%). To understand the reason of the high oxygen sensitivity of 2PS-2FPh, the effect of a rigid medium on conformational distortion was studied using a set of experimental and theoretical approaches. Doping 2PS-2FPh into Zeonex results in strong room-temperature phosphorescence in a vacuum with singlet-triplet splitting (ΔEST) widened to 0.47 eV as compared to 0.17 eV observed for the solution in 2-methyltetrahydrofuran. Molecular dynamic simulation with 2PS-2FPh doped in Zeonex indicates the increased molecular heterogeneity. Concomitantly, the hybrid local and charge transfer triplet state (3HLCT) becomes more local allowing the room temperature phosphorescence to be observed from locally excited triplet states. These results showed that conformational disorder and rigidity of the medium can significantly widen ΔEST of donor-acceptor-donor type molecules transforming 3HLCT into 3LE and thus facilitating the room-temperature phosphorescence and high oxygen sensitivity of 2PS-2FPh.

Język oryginałuangielski
Numer artykułu133295
CzasopismoSensors and Actuators B: Chemical
Tom380
Identyfikatory DOI
Status publikacjiOpublikowano - 1 kwi 2023

Obszary tematyczne ASJC Scopus

  • Materiały elektroniczne, optyczne i magnetyczne
  • Instrumentacja
  • Fizyka materii skondensowanej
  • Powierzchnie, powłoki i filmy
  • Metale i stopy
  • Inżynieria elektryczna i elektroniczna
  • Chemia materiałowa

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