Published September 23, 2013 | Version Supplemental Material + Accepted Version
Journal Article Open

Investigations into Ruthenium Metathesis Catalysts with Six-Membered Chelating NHC Ligands: Relationship between Catalyst Structure and Stereoselectivity

  • 1. ROR icon California Institute of Technology

Abstract

A series of ruthenium catalysts bearing five-membered chelating NHC architectures that exhibit very high Z-selectivity in a variety of metathesis reactions have recently been reported. It was envisioned that catalysts possessing six-membered chelates could similarly exhibit high Z-selectivity and address limitations of this methodology. We thus prepared a number of new catalysts and systematically investigated the impact of the NHC and anionic ligand on their stereoselectivity. In standard metathesis assays, only catalysts containing six-membered chelated NHC structures and η^2-bound anionic ligands favored the Z-olefin products. In addition, substitution with bulkier N-aryl groups led to improved Z-selectivity. The effect of ligand structure on stereoselectivity discovered in this study will be useful in the future design of highly active and Z-selective ruthenium catalysts.

Additional Information

© 2013 American Chemical Society. Received: July 15, 2013; Published: August 29, 2013. We thank Dr. D. Benitez, Dr. B. K. Keitz, and Dr. P. Teo for helpful discussions and suggestions for this work. Materia, Inc. is thanked for the generous donation of catalysts. Dr. M. W. Day and Mr. L. M. Henling are acknowledged for X-ray crystallography analysis. The Bruker KAPPA APEXII X-ray diffractometer was purchased via an NSF CRIF:MU award to the California Institute of Technology, CHE-0639094. This work was financially supported by National Institutes of Health (NIH 5R01GM031332-27) and Mitsui Chemicals, Inc.

Attached Files

Accepted Version - nihms520329.pdf

Supplemental Material - om4006966_si_001.pdf

Supplemental Material - om4006966_si_002.cif

Supplemental Material - om4006966_si_003.cif

Supplemental Material - om4006966_si_004.cif

Supplemental Material - om4006966_si_005.cif

Supplemental Material - om4006966_si_006.cif

Supplemental Material - om4006966_si_007.cif

Supplemental Material - om4006966_si_008.cif

Files

nihms520329.pdf

Files (7.0 MB)

Name Size
md5:9bd99335dcc3b879c299e3c6c2cbf7c3
4.2 MB Preview Download
md5:2bcc007705334eb5959a521f057419a5
2.6 MB Preview Download
md5:3d9b297138e18993905d3034eb6a0f85
26.4 kB Download
md5:faa4827c80de1c589a687eb3d589d5b9
23.3 kB Download
md5:cb076832bb6bac9d1de285fbe0178a90
21.2 kB Download
md5:2a0709bcac7f5e5beb32ea62332cd2fc
22.5 kB Download
md5:6474efdaa0b5e36bb7451f23a273092d
24.2 kB Download
md5:269951f5864be2d72adcf6860591d926
20.8 kB Download
md5:6d811e87774b06b70660a83ebdb63e7c
21.6 kB Download

Additional details

Identifiers

PMCID
PMC3826573
Eprint ID
42802
DOI
10.1021/om4006966
Resolver ID
CaltechAUTHORS:20131203-134319736

Funding

NSF
CHE-0639094
NIH
5R01GM031332-27
Mitsui Chemicals, Inc.

Dates

Created
2013-12-03
Created from EPrint's datestamp field
Updated
2021-11-10
Created from EPrint's last_modified field