Redox-responsive phosphonite gold complexes in hydroamination catalysis

E. Deck, H.E. Wagner, J. Paradies, F. Breher, Chemical Communications (2019) 5323–5326.

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Journal Article | Published | English
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Abstract
<p>Very high activities were observed in the redox-induced hydroamination of alkynes by employing a redox-active gold(<sc>i</sc>) complex featuring an electron-deficient, terphenyl-substituted phosphonite-based ligand.</p>
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Chemical Communications
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5323-5326
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Deck E, Wagner HE, Paradies J, Breher F. Redox-responsive phosphonite gold complexes in hydroamination catalysis. Chemical Communications. 2019:5323-5326. doi:10.1039/c9cc01492f
Deck, E., Wagner, H. E., Paradies, J., & Breher, F. (2019). Redox-responsive phosphonite gold complexes in hydroamination catalysis. Chemical Communications, 5323–5326. https://doi.org/10.1039/c9cc01492f
@article{Deck_Wagner_Paradies_Breher_2019, title={Redox-responsive phosphonite gold complexes in hydroamination catalysis}, DOI={10.1039/c9cc01492f}, journal={Chemical Communications}, author={Deck, Eva and Wagner, Hanna E. and Paradies, Jan and Breher, Frank}, year={2019}, pages={5323–5326} }
Deck, Eva, Hanna E. Wagner, Jan Paradies, and Frank Breher. “Redox-Responsive Phosphonite Gold Complexes in Hydroamination Catalysis.” Chemical Communications, 2019, 5323–26. https://doi.org/10.1039/c9cc01492f.
E. Deck, H. E. Wagner, J. Paradies, and F. Breher, “Redox-responsive phosphonite gold complexes in hydroamination catalysis,” Chemical Communications, pp. 5323–5326, 2019.
Deck, Eva, et al. “Redox-Responsive Phosphonite Gold Complexes in Hydroamination Catalysis.” Chemical Communications, 2019, pp. 5323–26, doi:10.1039/c9cc01492f.

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