Modulating the Inclusive and Coordinating Ability of Thiacalix[4]arene and Its Antenna Effect on Yb[sup.3+]-Luminescence via Upper-Rim Substitution

The present work introduces the series of thiacalix[4]arenes (H[sub.4]L) bearing different upper-rim substituents (R = H, Br, NO[sub.2]) for rational design of ligands providing an antenna-effect on the NIR Yb[sup.3+]-centered luminescence of their Yb[sup.3+] complexes. The unusual inclusive self-as...

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Veröffentlicht in:Molecules (Basel, Switzerland) Switzerland), 2022-10, Vol.27 (20)
Hauptverfasser: Podyachev, Sergey N, Sudakova, Svetlana N, Zairov, Rustem R, Syakaev, Victor V, Masliy, Alexey N, Dusek, Michal, Gubaidullin, Aidar T, Dovzhenko, Alexey P, Buzyurova, Daina N, Lapaev, Dmitry V, Mambetova, Gulnaz Sh, Babaev, Vasily M, Kuznetsov, Andrey M, Mustafina, Asiya R
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Sprache:eng
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Zusammenfassung:The present work introduces the series of thiacalix[4]arenes (H[sub.4]L) bearing different upper-rim substituents (R = H, Br, NO[sub.2]) for rational design of ligands providing an antenna-effect on the NIR Yb[sup.3+]-centered luminescence of their Yb[sup.3+] complexes. The unusual inclusive self-assembly of H[sub.3]L[sup.−] (Br) through Br...π interactions is revealed through single-crystal XRD analysis. Thermodynamically favorable formation of dimeric complexes [2Yb[sup.3+]:2HL[sup.3−]] leads to efficient sensitizing of the Yb[sup.3+] luminescence for H[sub.4]L (Br, NO[sub.2]), while poor sensitizing is observed for ligand H[sub.4]L (H). X-ray analysis of the single crystal separated from the basified DMF solutions of YbCl[sub.3] and H[sub.4]L(NO[sub.2]) has revealed the transformation of the dimeric complexes into [4Yb[sup.3+]:2L[sup.4−]] ones with a cubane-like cluster structure. The luminescence characteristics of the complexes in the solutions reveal the peculiar antenna effect of H[sub.4]L(R = NO[sub.2]), where the triplet level at 567 nm (17,637 cm[sup.−1]) arisen from ILCT provides efficient sensitizing of the Yb[sup.3+] luminescence.
ISSN:1420-3049
1420-3049
DOI:10.3390/molecules27206793