Phosphine substitution reactions of (η5-cyclopentadienyl)ruthenium bis(triarylphosphine) chloride, CpRu(PAr3)2Cl {PAr3 = PPh3, P(p-CH3C6H4)3, P(p-FC6H4)3, P(p-CH3OC6H4)3, and PPh2(p-CH3C6H4)}: a tale of two mechanisms
Author:
Affiliation:
1. Department of Chemistry
2. Colby College
3. Waterville, USA
4. Wellesley College
5. Wellesley, USA
6. Department of Chemistry and Chemical Biology
7. Northeastern University
8. Boston, USA
Abstract
Phosphine substitution in CpRu(PAr3)2Cl complexes occurs by competing mechanisms and in some cases is accelerated by added chloride.
Publisher
Royal Society of Chemistry (RSC)
Subject
Inorganic Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2014/DT/C4DT02240H
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3. Cyclopentadienyl Ru II Complexes as Highly Efficient Catalysts for the N ‐Methylation of Alkylamines by Methanol
4. Half-Sandwich Ruthenium(II) Complexes as Catalysts for Stereoselective Carbene−Carbene Coupling Reactions
5. Half-Sandwich Ruthenium(II) Catalysts for C−C Coupling Reactions between Alkenes and Diazo Compounds
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1. Phosphine substitution and linkage isomerization in cyclopentadienylruthenium bis(triphenylphosphine)thiocyanide and selenocyanide, CpRu(PPh3)2NCS and CpRu(PPh3)2SeCN;Dalton Transactions;2023
2. Kinetics and mechanism of halide exchange in reactions of CpRu(PPh3)2Cl with alkyl halides: evidence for radical pairs;New Journal of Chemistry;2023
3. Chloro(η 5 ‐Cyclopentadienyl)Bis(Triphenylphosphine)Ruthenium(II) [and Related CpRuX(PR 3 ) 2 Complexes];Encyclopedia of Reagents for Organic Synthesis;2022-07-18
4. Kinetics of halide exchange in cyclopentadienylruthenium bis(triarylphosphine)halides;Polyhedron;2022-05
5. Kinetics of phosphine substitution in CpRu(PPh3)2X (X = Cl, Br, I, N3, and NCO);RSC Advances;2017
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