Effect of aryldimethylphosphine electronics on rate of oxidative addition of aryl electrophiles at Ni 0

dc.contributor.advisorChairperson, Graduate Committee: Sharon Neufeldten
dc.contributor.authorGiroux, Michael Jamesen
dc.date.accessioned2021-05-19T15:52:55Z
dc.date.available2021-05-19T15:52:55Z
dc.date.issued2019en
dc.description.abstractAn analysis of kinetics related to the selectivity of aryldimethylphosphine-nickel complexes for reaction at carbon--chlorine versus carbon--tosylate bonds is reported. A series of aryldimethylphosphine ligands bearing electronically-varied substituents were investigated. The rate constants for oxidative addition of ligand-nickel complexes to either aryl chloride or aryl tosylate substrates were calculated. These rate constants were used to construct Hammett plots describing the susceptibility of oxidative addition at both types of electrophiles to electronic influence from the ligand. Oxidation of catalyst to aryl tosylates yields a plot with a negative slope, while addition to aryl chlorides produces a positive slope. With this, we see that electron donating groups accelerate the addition of catalyst to aryl tosylates, while electron withdrawing groups may change the rate determining step of addition to aryl chlorides.en
dc.identifier.urihttps://scholarworks.montana.edu/handle/1/16187en
dc.language.isoenen
dc.publisherMontana State University - Bozeman, College of Letters & Scienceen
dc.rights.holderCopyright 2019 by Michael James Girouxen
dc.subject.lcshPhosphineen
dc.subject.lcshElectronicsen
dc.subject.lcshNickel oxideen
dc.subject.lcshLigandsen
dc.subject.lcshCatalystsen
dc.titleEffect of aryldimethylphosphine electronics on rate of oxidative addition of aryl electrophiles at Ni 0en
dc.typeThesisen
mus.data.thumbpage13en
thesis.degree.committeemembersMembers, Graduate Committee: Mary J. Cloninger; Matthew Cook; Thomas S. Livinghouseen
thesis.degree.departmentChemistry & Biochemistry.en
thesis.degree.genreThesisen
thesis.degree.nameMSen
thesis.format.extentfirstpage1en
thesis.format.extentlastpage162en

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