SO2 and SO3 reactions with [(C5Me5)2Sm-O-Sm(C5Me5)2]: a DFT investigation and comparison with CO2 reactivity
Author:
Affiliation:
1. LPCNO
2. Université de Toulouse
3. CNRS
4. INSA
5. UPS
6. Institute of Inorganic Chemistry
7. Karlsruhe Institute of Technology (KIT)
8. 76131 Karlsruhe
9. Germany
Abstract
Samarocene oxide [Cp*2Sm-O-SmCp*2] with Cp* = C5Me5, often seen as an undesirable product resulting from the oxidation of samarocene, has been reported to react with organic and inorganic anhydrides.
Publisher
Royal Society of Chemistry (RSC)
Subject
Inorganic Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2017/DT/C7DT01703K
Reference21 articles.
1. Solution synthesis and crystallographic characterization of the divalent organosamarium complexes (C5Me5)2Sm(THF)2 and [(C5Me5)Sm(.mu.-I)(THF)2]2
2. W. J. Evans , T. A.Ulibarri, H.Schumann and S.Nickel, Inorganic Syntheses, John Wiley & Sons, 2007, vol. 27, p. 155
3. Synthesis and x-ray crystallographic characterization of an oxo-bridged bimetallic organosamarium complex, [(C5Me5)2Sm]2(.mu.-O)
4. Structural studies of lanthanide and yttrium metallocene oxides
5. Samarocene oxide: from an undesired decomposition product to a new reagent
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