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Search for "copper(II) acetate" in Full Text gives 28 result(s) in Beilstein Journal of Organic Chemistry.

A ferrocene redox-active triazolium macrocycle that binds and senses chloride

  • Nicholas G. White and
  • Paul D. Beer

Beilstein J. Org. Chem. 2012, 8, 246–252, doi:10.3762/bjoc.8.25

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  • , C≡CH), 1.87 (m, 4H, trz-CH2-CH2); 13C NMR (CDCl3) δ 147.3, 120.6, 83.9, 82.7, 69.9, 69.6, 69.0, 49.5, 28.1, 24.6, 18.0; HRMS–ESI (m/z): [M + Na]+ calcd for C26H28N6Fe·Na, 503.1617; found, 503.1614. Bis(triazole) macrocycle 3 The bis(alkyne) 2 (0.120 g, 0.250 mmol) and copper(II) acetate monohydrate
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Published 13 Feb 2012

Palladium- and copper-mediated N-aryl bond formation reactions for the synthesis of biological active compounds

  • Carolin Fischer and
  • Burkhard Koenig

Beilstein J. Org. Chem. 2011, 7, 59–74, doi:10.3762/bjoc.7.10

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  • Buchwald [6][7] and Hartwig [8][9] has been a major breakthrough in this field. More recently, Chan [10] and Lam [11][12] introduced the copper-mediated arylation of N-nucleophiles using stoichiometric copper(II) acetate and boronic acids. Collman improved the procedure using catalytic amounts of [Cu(OH
  • , was achieved by reacting 9-N-purines 91 with an excess of arylboronic acid 92 in the presence of copper(II) acetate, molecular sieves and phenanthroline (Scheme 22). Bakkestuen and Gundersen showed that electron-donating and electron-withdrawing substituents on the arylboronic acid were tolerated
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Published 14 Jan 2011

The first salen- type ligands derived from 3',5'-diamino- 3',5'-dideoxythymidine and -dideoxyxylothymidine and their corresponding copper(II) complexes

  • Daniel Koth,
  • Michael Gottschaldt,
  • Helmar Görls and
  • Karolin Pohle

Beilstein J. Org. Chem. 2006, 2, No. 17, doi:10.1186/1860-5397-2-17

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  • binding site and the N-glycosidic bound thymine provides an additional chiral information and steric shielding. After the ligands had been added to a mixture of copper(II) acetate in THF the complexes were formed within a few minutes resulting in a dark green solution (Scheme 2). All four ligands 8–11
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Published 25 Aug 2006
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