51 research outputs found

    Lower-rim ferrocenyl substituted calixarenes: new electrochemical sensors for anions

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    New ferrocene substituted calix[4 and 5]arenes have been prepared and the crystal structure of a lower-rim substituted bis ferrocene calix[4]arene (7) has been elucidated. The respective ferrocene/ferrocenium redox-couples of compounds 6 (a calix[4]arene tetra ferrocene amide) and 8 (a calix[5]arene pentaferrocene amide) are shown to be significantly cathodically perturbed in the presence of anions by up to 160 mV in the presence of dihydrogen phosphate

    Microwave-assisted and solvent-free peroxidative oxidation of 1-phenylethanol to acetophenone with a CuII–TEMPO catalytic system

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    Abstract The water-soluble copper(II) complex [Cu(H2R)(HL)]∙H2O (1) was prepared by reaction of copper(II) nitrate hydrate with (E)-2-(((1-hydroxynaphthalen-2-yl)methylene)amino) benzenesulfonic acid (H2L) and diethanolamine (H3R). It was characterized by IR and ESI-MS spectroscopies, elemental and X-ray crystal structural analyses. 1 shows a high catalytic activity for the solvent-free microwave (MW) assisted oxidation of 1-phenylethanol with tert-butylhydroperoxide, leading, in the presence of TEMPO, to yields up to 85% (TON = 850) in a remarkably short reaction time (15 min, with the corresponding TOF value of 3.40 × 103 h− 1) under low power (25 W) MW irradiation

    Synthesis, structure and catalase activity of three new manganese(III) complexes with a N,N,O donor Schiff-base ligand

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    Three new Mn(III) complexes [Mn(L)(L′)(N<sub>3</sub>)] (1), [Mn(L)(L′)(Cl)] (2) and {[Mn(L)(L′)(H<sub>2</sub>O)](ClO<sub>4</sub>)}<sub>2</sub> (3) (where, HL = 2-[1-(2-dimethylamino-ethylimino)-ethyl]-phenol and HL′ = o-hydroxyacetophenone) have been synthesized and characterized by UV–vis and IR spectroscopy and single-crystal X-ray diffraction analyses. All of the three monomeric complexes show six-coordinate octahedral geometry around the Mn(III) center and are bonded to the deprotonated tridentate ligand L together with the deprotonated bidentate ligand L′ and a labile monodentate donor i.e. azide in 1, chloride in 2 and water in 3, respectively. All of the complexes catalyze the disproportionation of hydrogen peroxide into water and dioxygen i.e. they possess catalase activity. The turnover numbers of the complexes follow the order: 3 &#62; 1 &#62; 2
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