Autoxidation von CuI-Komplexen, II: Mechanismus der Autoxidation von Komplexen mit einzähnigen Stickstoffliganden

The autoxidation of cuprous complexes with monodentate nitrogeneous bases (L) has been studied spectrophotometric-ally and by following the O2-consumption with an oxygen sensor. The proposed mechanism includes two different oxygenated species. CuL2O2+ is less reactive than CuL3O2+ by many powers of...

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Main Author: A. Zuberbühler
Format: Article
Language:deu
Published: Swiss Chemical Society 1969-11-01
Series:CHIMIA
Online Access:https://www.chimia.ch/chimia/article/view/8806
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author A. Zuberbühler
author_facet A. Zuberbühler
author_sort A. Zuberbühler
collection DOAJ
description The autoxidation of cuprous complexes with monodentate nitrogeneous bases (L) has been studied spectrophotometric-ally and by following the O2-consumption with an oxygen sensor. The proposed mechanism includes two different oxygenated species. CuL2O2+ is less reactive than CuL3O2+ by many powers of magnitude which is explained by the fact that  CuL2O2+ has a coordination number of 3, specific for CuI, whereas CuL3O2+ may gain quasiplanar, CuII specific, symmetry by molecular vibration.   
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institution Kabale University
issn 0009-4293
2673-2424
language deu
publishDate 1969-11-01
publisher Swiss Chemical Society
record_format Article
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spelling doaj-art-572b029b3a5f426faa700ab024e6f5b72025-08-20T03:53:27ZdeuSwiss Chemical SocietyCHIMIA0009-42932673-24241969-11-01231110.2533/chimia.1969.416Autoxidation von CuI-Komplexen, II: Mechanismus der Autoxidation von Komplexen mit einzähnigen StickstoffligandenA. Zuberbühler0Institut für anorganische Chemie der Universität Basel The autoxidation of cuprous complexes with monodentate nitrogeneous bases (L) has been studied spectrophotometric-ally and by following the O2-consumption with an oxygen sensor. The proposed mechanism includes two different oxygenated species. CuL2O2+ is less reactive than CuL3O2+ by many powers of magnitude which is explained by the fact that  CuL2O2+ has a coordination number of 3, specific for CuI, whereas CuL3O2+ may gain quasiplanar, CuII specific, symmetry by molecular vibration.    https://www.chimia.ch/chimia/article/view/8806
spellingShingle A. Zuberbühler
Autoxidation von CuI-Komplexen, II: Mechanismus der Autoxidation von Komplexen mit einzähnigen Stickstoffliganden
CHIMIA
title Autoxidation von CuI-Komplexen, II: Mechanismus der Autoxidation von Komplexen mit einzähnigen Stickstoffliganden
title_full Autoxidation von CuI-Komplexen, II: Mechanismus der Autoxidation von Komplexen mit einzähnigen Stickstoffliganden
title_fullStr Autoxidation von CuI-Komplexen, II: Mechanismus der Autoxidation von Komplexen mit einzähnigen Stickstoffliganden
title_full_unstemmed Autoxidation von CuI-Komplexen, II: Mechanismus der Autoxidation von Komplexen mit einzähnigen Stickstoffliganden
title_short Autoxidation von CuI-Komplexen, II: Mechanismus der Autoxidation von Komplexen mit einzähnigen Stickstoffliganden
title_sort autoxidation von cui komplexen ii mechanismus der autoxidation von komplexen mit einzahnigen stickstoffliganden
url https://www.chimia.ch/chimia/article/view/8806
work_keys_str_mv AT azuberbuhler autoxidationvoncuikomplexeniimechanismusderautoxidationvonkomplexenmiteinzahnigenstickstoffliganden