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Synthesis and reactivity of [Au(NHC)(Bpin)] complexes

(2019) CHEMICAL COMMUNICATIONS. 55(47). p.6799-6802
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Abstract
A new class of [Au(NHC)(Bpin)] complexes has been synthesized and their unusual reactivity was investigated using computational and experimental methods. The gold-boryl complexes exhibit unexpected high stability and reactivity.
Keywords
TRANSITION-METAL-COMPLEXES, ALPHA, BETA-UNSATURATED CARBONYL-COMPOUNDS, COPPER(I) BORYL COMPLEXES, SUZUKI-MIYAURA, BORON, COORDINATION, DIBORATION, ACTIVATION, INSERTION, DIBORON

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Citation

Please use this url to cite or link to this publication:

MLA
Zinser, Caroline M., et al. “Synthesis and Reactivity of [Au(NHC)(Bpin)] Complexes.” CHEMICAL COMMUNICATIONS, vol. 55, no. 47, 2019, pp. 6799–802, doi:10.1039/c9cc03171e.
APA
Zinser, C. M., Nahra, F., Falivene, L., Brill, M., Cordes, D. B., Slawin, A. M., … Nolan, S. (2019). Synthesis and reactivity of [Au(NHC)(Bpin)] complexes. CHEMICAL COMMUNICATIONS, 55(47), 6799–6802. https://doi.org/10.1039/c9cc03171e
Chicago author-date
Zinser, Caroline M, Fady Nahra, Laura Falivene, Marcel Brill, David B Cordes, Alexandra MZ Slawin, Luigi Cavallo, Catherine Cazin, and Steven Nolan. 2019. “Synthesis and Reactivity of [Au(NHC)(Bpin)] Complexes.” CHEMICAL COMMUNICATIONS 55 (47): 6799–6802. https://doi.org/10.1039/c9cc03171e.
Chicago author-date (all authors)
Zinser, Caroline M, Fady Nahra, Laura Falivene, Marcel Brill, David B Cordes, Alexandra MZ Slawin, Luigi Cavallo, Catherine Cazin, and Steven Nolan. 2019. “Synthesis and Reactivity of [Au(NHC)(Bpin)] Complexes.” CHEMICAL COMMUNICATIONS 55 (47): 6799–6802. doi:10.1039/c9cc03171e.
Vancouver
1.
Zinser CM, Nahra F, Falivene L, Brill M, Cordes DB, Slawin AM, et al. Synthesis and reactivity of [Au(NHC)(Bpin)] complexes. CHEMICAL COMMUNICATIONS. 2019;55(47):6799–802.
IEEE
[1]
C. M. Zinser et al., “Synthesis and reactivity of [Au(NHC)(Bpin)] complexes,” CHEMICAL COMMUNICATIONS, vol. 55, no. 47, pp. 6799–6802, 2019.
@article{8632828,
  abstract     = {{A new class of [Au(NHC)(Bpin)] complexes has been synthesized and their unusual reactivity was investigated using computational and experimental methods. The gold-boryl complexes exhibit unexpected high stability and reactivity.}},
  author       = {{Zinser, Caroline M and Nahra, Fady and Falivene, Laura and Brill, Marcel and Cordes, David B and Slawin, Alexandra MZ and Cavallo, Luigi and Cazin, Catherine and Nolan, Steven}},
  issn         = {{1359-7345}},
  journal      = {{CHEMICAL COMMUNICATIONS}},
  keywords     = {{TRANSITION-METAL-COMPLEXES,ALPHA,BETA-UNSATURATED CARBONYL-COMPOUNDS,COPPER(I) BORYL COMPLEXES,SUZUKI-MIYAURA,BORON,COORDINATION,DIBORATION,ACTIVATION,INSERTION,DIBORON}},
  language     = {{eng}},
  number       = {{47}},
  pages        = {{6799--6802}},
  title        = {{Synthesis and reactivity of [Au(NHC)(Bpin)] complexes}},
  url          = {{http://doi.org/10.1039/c9cc03171e}},
  volume       = {{55}},
  year         = {{2019}},
}

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