Day 1, April 14 - Posters
Start Date
14-4-2020 9:00 AM
End Date
14-4-2020 11:00 AM
Publisher
University of Tennessee at Chattanooga
Place of Publication
Chattanooga (Tenn.)
Abstract
Our group is interested in exploiting cis-alkynyl transition metals to form trans-bidentate ligands in order to explore C—H activation. The p-cymene-supported ruthenium(II) complex (p-cym)Ru(PMe3)(C22-py)2 (where C2-2-py = 2-ethynylpyridine) has been prepared and characterized by NMR spectroscopy. We are interested in the interaction of palladium(II) acetate utilizing the Ru(II) center as a hinge in order to force the pyridine ligands to act as a trans-bidentate ligand. The synthesis and characterization of (p-cym)Ru(PMe3)(C22-py)2, reactivity with Pd(OAc)2, and comparisons to the previously reported Cp*2Ti(C2-2-py)2.
Date
4-14-2020
Document Type
posters
Language
English
Rights
http://rightsstatements.org/vocab/InC/1.0/
License
http://creativecommons.org/licenses/by/4.0/
Recommended Citation
Neglia, Sophia; Lee, John P.; and Pienkos, Jared A., "Synthesis, characterization, and reactivity of a heterobimetallic organometallic complex with a trans bidentate ligand for catalytic carbon-hydrogen bond activation". ReSEARCH Dialogues Conference proceedings. https://scholar.utc.edu/research-dialogues/2020/day1_posters/163.
Synthesis, characterization, and reactivity of a heterobimetallic organometallic complex with a trans bidentate ligand for catalytic carbon-hydrogen bond activation
Our group is interested in exploiting cis-alkynyl transition metals to form trans-bidentate ligands in order to explore C—H activation. The p-cymene-supported ruthenium(II) complex (p-cym)Ru(PMe3)(C22-py)2 (where C2-2-py = 2-ethynylpyridine) has been prepared and characterized by NMR spectroscopy. We are interested in the interaction of palladium(II) acetate utilizing the Ru(II) center as a hinge in order to force the pyridine ligands to act as a trans-bidentate ligand. The synthesis and characterization of (p-cym)Ru(PMe3)(C22-py)2, reactivity with Pd(OAc)2, and comparisons to the previously reported Cp*2Ti(C2-2-py)2.