Patai's Chemistry of Functional Groups 2013
DOI: 10.1002/9780470682531.pat0652
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The Chemistry of Diene–Iron and Dienyl–Iron Complexes

Abstract: (η 4 ‐Diene)iron complexes and η 5 ‐dienyliumiron complex salts represent intriguing structures with planar π‐donating C 4 or C 5 ligands attached to the central iron atom. In many cases, they are rather stable compounds due to an 18‐electron count at the iron center. Tricarbonyl(η 4 ‐diene)iron complexes are formed from cyclic and acylic 1,3‐dienes and a tricarbonyliron source. Under certain… Show more

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“…16,[27][28][29] The catalytic role of iron(0) carbonyl complexes is also widely reported in organic synthesis. 4,[30][31][32][33] For instance, iron (0) tricarbonyl η 4 -diene complexes, such as Knölker's catalysts, exhibit versatile catalytic activity in hydrogenation, 34,35 hydrosilylation, 36 and alkylation 37 transformations of carbonyl compounds. Iron(0) tricarbonyl η 4 -1-azadiene complexes are the analogues of iron(0) tricarbonyl η 4 -diene, and may offer different reactivity in this regard due to the introduction of an aza moiety which provides a basic centre in the ligands.…”
Section: Introductionmentioning
confidence: 99%
“…16,[27][28][29] The catalytic role of iron(0) carbonyl complexes is also widely reported in organic synthesis. 4,[30][31][32][33] For instance, iron (0) tricarbonyl η 4 -diene complexes, such as Knölker's catalysts, exhibit versatile catalytic activity in hydrogenation, 34,35 hydrosilylation, 36 and alkylation 37 transformations of carbonyl compounds. Iron(0) tricarbonyl η 4 -1-azadiene complexes are the analogues of iron(0) tricarbonyl η 4 -diene, and may offer different reactivity in this regard due to the introduction of an aza moiety which provides a basic centre in the ligands.…”
Section: Introductionmentioning
confidence: 99%