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Synthetic, structural, photophysical and computational studies on 2-arylethynyl-1,3,2-diazaboroles

Weber, Lothar; Werner, Vanessa; Fox, Mark A.; Marder, Todd B.; Schwedler, Stefanie; Brockhinke, Andreas; Hans-Georg, Stammler; Neumann, Beate

Synthetic, structural, photophysical and computational studies on 2-arylethynyl-1,3,2-diazaboroles Thumbnail


Authors

Lothar Weber

Vanessa Werner

Todd B. Marder

Stefanie Schwedler

Andreas Brockhinke

Stammler Hans-Georg

Beate Neumann



Abstract

New 2-arylalkynyl benzo-1,3,2-diazaboroles, 2-(4′-XC6H4C[triple bond, length as m-dash]C)-1,3-Et2-1,3,2-N2BC6H4 (X =Me 2; MeO 3; MeS 4; Me2N 5), were prepared from B-bromodiazaborole, 2-Br-1,3-Et2-1,3,2-N2BC6H4, with the appropriate lithiated arylacetylene, ArC[triple bond, length as m-dash]CLi. Molecular structures of 2, 3 and 5 were determined by X-ray diffraction studies. UV-vis and luminescence spectroscopic studies on these diazaboroles reveal intense blue/violet fluorescence with very large quantum yields of 0.89–0.99 for 2–5. The experimental findings were complemented by DFT and TD-DFT calculations. The Stokes shift of only 2600 cm−1 for 5, compared to Stokes shifts in the range of 5900–7300 cm−1 for 1–4, is partly explained by the different electronic structures found in 5 compared to 1–4 (X = H). The HOMO is mainly located on the aryl group in 5 and on the diazaborolyl group in 1–4 whereas the LUMOs are largely aryl in character for all compounds. Thus, in contrast to other conjugated systems containing three-coordinate boron centers such as B(Mes)2, (Mes = 2,4,6-Me3C6H2), in which the boron serves as a π-acceptor, the 10-π electron benzodiazaborole moiety appears to function as a π-donor moiety.

Citation

Weber, L., Werner, V., Fox, M. A., Marder, T. B., Schwedler, S., Brockhinke, A., …Neumann, B. (2009). Synthetic, structural, photophysical and computational studies on 2-arylethynyl-1,3,2-diazaboroles. Dalton Transactions, 2009(15), 2823-2831. https://doi.org/10.1039/b821208b

Journal Article Type Article
Acceptance Date Jan 30, 2009
Publication Date Apr 1, 2009
Deposit Date Dec 14, 2011
Publicly Available Date Apr 30, 2015
Journal Dalton Transactions
Print ISSN 1477-9226
Electronic ISSN 1477-9234
Publisher Royal Society of Chemistry
Peer Reviewed Peer Reviewed
Volume 2009
Issue 15
Pages 2823-2831
DOI https://doi.org/10.1039/b821208b

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