| Literature DB >> 28236333 |
Steven F Hannigan1, Amanda I Arnoff1, Sarah E Neville1, June S Lum1, James A Golen2, Arnold L Rheingold2, Nicole Orth3, Ivana Ivanović-Burmazović3, Patricia Liebhäuser4, Thomas Rösener4, Julia Stanek4, Alexander Hoffmann4, Sonja Herres-Pawlis4, Linda H Doerrer1.
Abstract
CuI complexes of the form K[(R3 P)Cu(pinF )], in which (pinF )2- is the bidentate, oxygen-donating ligand perfluoropinacolate, were synthesized and characterized. Low-temperature oxygenation of the K[(R3 P)Cu(pinF )(PR3 )] species resulted in a trisanionic bis(μ3 -oxo) trinuclear copper(II,II,III) core characterized by UV/Vis spectroscopy (λmax [nm] = 330, 535, 630), cryospray-ionization mass spectrometry, and X-band electron paramagnetic resonance spectroscopy (derivative resonance at 3300 G, Δms =2 at 1500 G). The kinetic behavior of the trimeric {Cu3 O2 } species was quantified by stopped-flow spectroscopy and the associated electronic structures were investigated by DFT calculations. An asymmetric {Cu3 O2 } species, As TpinF , which bears a structure similar to multicopper oxidases, forms prior to full formation of the symmetric trinuclear core, Sy TpinF . The trimer catalytically oxidizes para-hydroquinone to benzoquinone (a form of oxidase chemistry).Entities:
Keywords: copper; dioxygen; kinetics; reaction mechanisms; stopped-flow spectroscopy
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Year: 2017 PMID: 28236333 DOI: 10.1002/chem.201605926
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236