Four-electron oxidative formation of aryl diazenes using a tantalum redox-active ligand complex.
about
Chemistry. Radical ligands confer nobility on base-metal catalystsRedox non-innocence permits catalytic nitrene carbonylation by (dadi)Ti[double bond, length as m-dash]NAd (Ad = adamantyl)Bimetallic reductive elimination from dinuclear Pd(III) complexes.Oxidative addition of carbon-carbon bonds with a redox-active bis(imino)pyridine iron complex.Catalytic hydrogenation activity and electronic structure determination of bis(arylimidazol-2-ylidene)pyridine cobalt alkyl and hydride complexesSynthetic approaches to (smif)2Ti (smif = 1,3-di-(2-pyridyl)-2-azaallyl) reveal redox non-innocence and C-C bond-formation.Trianionic pincer and pincer-type metal complexes and catalysts.New avenues for ligand-mediated processes--expanding metal reactivity by the use of redox-active catechol, o-aminophenol and o-phenylenediamine ligands.On the Ambiphilic Reactivity of Geometrically Constrained Phosphorus(III) and Arsenic(III) Compounds: Insights into Their Interaction with Ionic Substrates.E-H Bond Activation of Ammonia and Water by a Geometrically Constrained Phosphorus(III) Compound.Non-innocent ligand behaviour of a bimetallic Cu complex employing a bridging catecholate.Double oxidation localizes spin in a Ni bis-phenoxyl radical complex.Aluminum complexes of the redox-active [ONO] pincer ligand.Class III delocalization and exciton coupling in a bimetallic bis-ligand radical complex.Group transfer reactions of d0 transition metal complexes: redox-active ligands provide a mechanism for expanded reactivity.Synthesis of Electron-Rich, Planarized Silicon(IV) Species and a Theoretical Analysis of Dimerizing Aminosilanes.On the Redox Reactivity of a Geometrically Constrained Phosphorus(III) Compound.Catalytic formal [2+2+1] synthesis of pyrroles from alkynes and diazenes via Ti(II)/Ti(IV) redox catalysis.Metal effects on ligand non-innocence in Group 5 complexes of the redox-active [ONO] pincer ligand.Influence of the chelate effect on the electronic structure of one-electron oxidized group 10 metal(II)-(disalicylidene)diamine complexes.MNDO and DFT Computational Study on the Mechanism of the Oxidation of 1,2-Diphenylhydrazine by Iodine
P2860
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P2860
Four-electron oxidative formation of aryl diazenes using a tantalum redox-active ligand complex.
description
2008 nî lūn-bûn
@nan
2008年の論文
@ja
2008年学术文章
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2008年学术文章
@zh
2008年学术文章
@zh-cn
2008年学术文章
@zh-hans
2008年学术文章
@zh-my
2008年学术文章
@zh-sg
2008年學術文章
@yue
2008年學術文章
@zh-hant
name
Four-electron oxidative format ...... m redox-active ligand complex.
@en
Four-electron oxidative format ...... m redox-active ligand complex.
@nl
type
label
Four-electron oxidative format ...... m redox-active ligand complex.
@en
Four-electron oxidative format ...... m redox-active ligand complex.
@nl
prefLabel
Four-electron oxidative format ...... m redox-active ligand complex.
@en
Four-electron oxidative format ...... m redox-active ligand complex.
@nl
P2093
P356
P1476
Four-electron oxidative format ...... m redox-active ligand complex.
@en
P2093
Alan F Heyduk
Joseph W Ziller
Ryan A Zarkesh
P304
P356
10.1002/ANIE.200800812
P407
P577
2008-01-01T00:00:00Z