Experimental and Computational Studies of Phosphine Ligand Displacement in Iridium–Pincer Complexes Employing Pyridine or Acetonitrile
Author:
Affiliation:
1. Department of Chemistry & Biochemistry, Texas Tech University, Lubbock, Texas 79409, United States
Funder
Division of Chemistry
Publisher
American Chemical Society (ACS)
Subject
Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry
Link
https://pubs.acs.org/doi/pdf/10.1021/acs.organomet.0c00202
Reference45 articles.
1. [Rh{NC5H3-2,6-(CH2PtBu2)2}(PCy3)][BArF4]: A Latent Low-Coordinate Rhodium(I) PNP Pincer Compound
2. High-Turnover Aromatic C–H Borylation Catalyzed by POCOP-Type Pincer Complexes of Iridium
3. Iron Hydride Complexes Bearing Phosphinite-Based Pincer Ligands: Synthesis, Reactivity, and Catalytic Application in Hydrosilylation Reactions
4. Activation of Dihydrogen and Silanes by Cationic Iron Bis(phosphinite) Pincer Complexes
5. Homocoupling of benzyl halides catalyzed by POCOP–nickel pincer complexes
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1. Dual Routes toward Observation of a trans-H2/Hydride Complex in an Iridium Pincer System and Hydrogenation Catalytic Activity;Organometallics;2023-03-06
2. Reactivity of four coordinate iridium complex towards hydrogen: An experimental and computational study;Journal of Organometallic Chemistry;2022-05
3. Iridium(iii) bis(thiophosphinite) pincer complexes: synthesis, ligand activation and applications in catalysis;Dalton Transactions;2022
4. The Role of (tBuPOCOP)Ir(I) and Iridium(III) Pincer Complexes in the Catalytic Hydrogenolysis of Silyl Triflates into Hydrosilanes;Organometallics;2021-11-29
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