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Please use this identifier to cite or link to this item: http://arks.princeton.edu/ark:/99999/fk4vt35s9p
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dc.contributor.advisorMacMillan, David W-
dc.contributor.authorHumphreys, Cassidy-
dc.date.accessioned2022-07-12T14:36:00Z-
dc.date.created2022-04-11-
dc.date.issued2022-07-12-
dc.identifier.urihttp://arks.princeton.edu/ark:/99999/fk4vt35s9p-
dc.description.abstractThis thesis reports a single-vessel, copper-catalyzed transformation of both heteroaryl carboxylic acids and aryl carboxylic acids to final C–N coupled products through the activation of (hetero)aryl halide intermediates. Whereas classic coupling chemistry has been limited to the use of non-naturally abundant materials like aryl halides, this process makes use of (hetero)aryl carboxylic acids through a photochemical, copper-catalyzed ligand-to-metal charge transfer (LMCT) process to form both heteroaryl bromides and aryl iodides through halogen atom transfers. Unlike past aryl carboxylic acid chemistry, this process proceeds under mild conditions and requires no prior synthesis steps. After halogenation, the (hetero)aryl intermediates are readily able to undergo amination through copper-catalyzed, Ullmann-Goldberg type chemistry. This two-step, single-vessel aromatic decarboxylation amination reaction represents one of the first successful C–N coupling processes that utilize elusive (heteroaryl)aryl carboxylic acids by using LMCT chemistry.en_US
dc.format.mimetypeapplication/pdf
dc.language.isoenen_US
dc.titleLigand-To-Copper Charge Transfer: A Single Vessel Decarboxylative Halogenation and Ullmann Cross-Coupling of (Hetero)Aryl Acidsen_US
dc.typePrinceton University Senior Theses
pu.embargo.lift2024-07-01-
pu.embargo.terms2024-07-01-
pu.date.classyear2022en_US
pu.departmentChemistryen_US
pu.pdf.coverpageSeniorThesisCoverPage
pu.contributor.authorid920209360
pu.mudd.walkinNoen_US
Appears in Collections:Chemistry, 1926-2020

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