On the Reactions of Fe(CH 2 ) + with 1,7–Octadiene in the Gas Phase
Author:
Affiliation:
1. Institut für Organische Chemie der Technischen Universität Berlin, Straße des 17. Juni 135, W–1000 Berlin 12, F.R.G.
Publisher
Wiley
Subject
Inorganic Chemistry
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1002/cber.19921251231
Reference39 articles.
1. Metal Ions Control the Competition between β‐ and γ‐Hydrogen Transfer in the Generation of Propene from 1,7‐Octadiene in the Gas Phase
2. Übergangsmetall-vermittelte Erzeugung von C2H4 aus 1,7-Octadien: regiospezifische Aktivierung innerer C-C-Bindungen anstelle Metathese-analoger Kupplung terminaler CH2-Gruppen
3. Transition-Metal-Induced Generation of C2H4 from 1,7-Octadiene: Regiospecific Activation of Internal CC Bonds instead of Metathesis-like Coupling of Terminal CH2 Groups
4. Consideration of the mechanism of the metal catalyzed olefin metathesis reaction
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1. Bond Activation by Metal–Carbene Complexes in the Gas Phase;Accounts of Chemical Research;2016-02-12
2. Efficient Room-Temperature, Au+ -Mediated Coupling of a Carbene Ligand with Methane To Generate C2 H x (x= 4, 6);Angewandte Chemie International Edition;2015-11-18
3. Au+ -vermittelte, effiziente Kupplung eines Carbenliganden mit Methan: Bildung von C2 H x (x= 4, 6) bei Raumtemperatur;Angewandte Chemie;2015-11-18
4. Carbon-Atom Extrusion from Halobenzenes and Its Coupling with a Methylene Ligand to Form Acetylene;Chemistry - A European Journal;2015-06-03
5. ChemInform Abstract: Reactions of Fe(CH2)+ with 1,7-Octadiene in the Gas Phase;ChemInform;2010-08-20
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