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University of Denver

Brønsted Acid Catalyzed Carbon-Carbon Bond Forming Reactions

Abstract

dc:description.abstract

<p>The focus of this research project lies in the development of new methodology in the field of Brønsted acid catalysis enabling rapid synthesis of medicinally relevant compounds. It is foreseen that small molecule sulfonic acids evaluated in this research project will unveil new asymmetric carbon carbon bond forming reactions between substrates hitherto unexplored with Brønsted acid catalysis. It has been established that strong Brønsted acids, such as phosphoric acids, are capable of mediating highly selective transformations operating through unique mechanistic manifolds.</p> <p>Specific focus for the sulfonic acid catalysts was geared towards asymmetric coupling reactions with synthetically useful precursors such as azlactones. We have discovered a novel coupling reaction between azlactones and acetals with Brønsted acid catalysis, with simple and universal purification procedure, pure products were isolated with some diastereoselectivities.</p> <p>The implementation of Newman-Kwart rearrangement afforded desired mono-protic BINOL based sulfonic acid was successfully performed. This will be followed by evaluating sulfonic acid catalytic efficiencies towards asymmetric coupling reactions.</p> <p>The total synthesis of latifolian A through application of a chiral sulfonic acid catalyzed Friedel–Crafts cyclization reaction as a key synthetic step was designed. This is an ongoing investigation but is promising in the new treatment of Alzheimer's that have potential benefits in medicinal chemistry.</p>

Degree

thesis:*
Name thesis:degree_name
Ph.D.
Level thesis:degree_level
Dissertation
Year dc:date.available
2018

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Miao, Jiangyue
Contributors dc:contributor
  • Bryan J. Cowen, Ph.D.

Subjects

dc:subject × 8

Rights

dc:rights
Statement dc:rights
  • <p>Copyright is held by the author. User is responsible for all copyright compliance.</p>
Language dc:language
en

Identifiers

dc:identifier.*
Repository record dc:identifier
https://digitalcommons.du.edu/etd/1533
OAI identifier oai:identifier
oai:digitalcommons.du.edu:etd-2533

Chain of custody

source
Harvested from
University of Denver
Base URL
digitalcommons.du.edu/do/oai/
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
citation

Miao, Jiangyue. Brønsted Acid Catalyzed Carbon-Carbon Bond Forming Reactions. Dissertation thesis, 2018. https://digitalcommons.du.edu/etd/1533