Show simple item record

dc.contributor.advisorBartlett, Paul D.
dc.contributor.authorMcCluney, Rebecca Ellenen_US
dc.date.accessioned2019-10-11T15:10:01Z
dc.date.available2019-10-11T15:10:01Z
dc.date.created1979en_US
dc.date.issued1979en_US
dc.identifieraleph-255028en_US
dc.identifier.urihttps://repository.tcu.edu/handle/116099117/31766
dc.description.abstractThe mechanism of reaction of diphenylketene with ground-state molecular oxygen was investigated by use of qualitative trapping studies and quantitative kinetic techniques. Key intermediates implicated in the mechanism are 1,1-diphenylacetolactone, 4,4-diphenyl-1,2-dioxetan- 3-one, benzophenone oxide and diphenyldioxirane. 1,1-Diphenylacetolactone, a 1,3-dipolar ion, was trapped by addition across the carbonyl of pentafluoroacetone and hexafluoroacetone. 4,4-Diphenyl-1,2-dioxetan- 3-one was implicated through luminescent behavior of the solution and the use of bromoform as a "heavy atom" solvent. Benzophenone oxide and 1,1-diphenyldioxirane were postulated as a result of the discovery of phenyl benzoate as a reaction product. Quantitative studies showed that, kinetically, the reaction is neither purely first order nor purely second order in diphenylketene. Solvent effects on the rate of reaction were less than ten-fold with no significant effect on product distribution. Significantly, however, use of bromoform as a solvent suppressed the formation of phenyl benzoate and dramatically increased the yield of benzophenone. Neither the rate of reaction nor the product distribution was affected by changes in oxygen concentration. The cyclic ketene acetal, 2-diphenylmethylene-5,5-diphenyl, 1-3-dioxolan-4-one, conceivably an adduct of diphenylketene and diphenylacetolactone, was isolated from the pot residue after distillation of diphenylketene.
dc.format.extentxiii, 206 leaves, bound : illustrations, chartsen_US
dc.format.mediumFormat: Printen_US
dc.language.isoengen_US
dc.relation.ispartofTexas Christian University dissertationen_US
dc.relation.ispartofAS38.M244en_US
dc.subject.lcshOxidationen_US
dc.subject.lcshDiphenylketeneen_US
dc.titleThe autoxidation of diphenylketeneen_US
dc.typeTexten_US
etd.degree.departmentDepartment of Chemistry
etd.degree.levelDoctoral
local.collegeCollege of Science and Engineering
local.departmentChemistry and Biochemistry
local.academicunitDepartment of Chemistry
dc.type.genreDissertation
local.subjectareaChemistry and Biochemistry
dc.identifier.callnumberMain Stacks: AS38 .M244 (Regular Loan)
dc.identifier.callnumberSpecial Collections: AS38 .M244 (Non-Circulating)
etd.degree.nameDoctor of Philosophy
etd.degree.grantorTexas Christian University


Files in this item

FilesSizeFormatView

There are no files associated with this item.

This item appears in the following Collection(s)

Show simple item record