Spectroscopic studies of hydride addition to the tricarbonylcyclopentadienyliron cation
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Biochemistry
Reference13 articles.
1. Sodium borohydride reduction of carbon monoxide in the cationic iron carbonyl complexes [C5Me5Fe(CO)2L]+ PF6- (L = CO or phosphine)
2. Hydride Reduction of the cations [(η5-C5H5)Fe(CO)3]PF6, [(η-1,5-C6H7)Fe(CO)3]BF4 and [(η-1,5-C7H9)Fe(CO)3]BF4: Evidence for the iron Formyl (η5-C5H5)Fe(CO)2(CHO)
3. Homogeneous reduction of ligated carbon dioxide and carbon monoxide to alkoxymethyl ligands
4. Thermolysis and photolysis of (cyclopentadiene)iron tricarbonyl. Evidence for a radical mechanism involving iron(I)
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1. Are there analogues of the indenyl effect in larger ring systems: a DFT study of hydride attack on [Mn(CO)3(naphthalene)]+ and [Cr(CO)3(benzotropylium)]+;Structural Chemistry;2018-08-30
2. A New Approach to Directly Synthesize (η5-C5H4R)Fe(CO)2SiR′3 by Reaction of Cyclopentadienes with Pentacarbonyliron and Hydrosilanes;Organometallics;2014-04-02
3. On the role of the indenyl effect in controlling intramolecular hydride transfer in iron carbonyl complexes;Journal of Organometallic Chemistry;2008-12
4. Theoretical and Experimental Studies of Hydride Addition to Iron Carbonyl Phosphine and Phosphite Complexes;Organometallics;2001-03-23
5. Reduction of a CO Ligand in an Iron Phosphonate Complex with a Neutral Borane Compound. Formation of a Formyl Complex with Intramolecular Coordination to a Boron Atom;Organometallics;2000-10-28
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