Selective ammonolysis of carboxylic acid derivatives

dc.contributor.advisor Brent H. Shanks
dc.contributor.author Lin, Hsi-Hsin
dc.contributor.department Department of Chemical and Biological Engineering
dc.date 2019-09-22T01:19:51.000
dc.date.accessioned 2020-06-30T03:16:59Z
dc.date.available 2020-06-30T03:16:59Z
dc.date.copyright Sat Dec 01 00:00:00 UTC 2018
dc.date.embargo 2020-11-25
dc.date.issued 2018-01-01
dc.description.abstract <p>To fully take advantage of the potential of bio-based molecules, selective modification chemistry on different functional groups is needed. Among the all, unsaturated diacid has been recognized as a high value-added category. The unsaturated bonds provide the position for further modification, and the diacid structure has various application in the polymer industry. However, the selective amination pathway between C-C double bonds and carboxylic acid groups has not been fully discussed in the literature. The goal of this work was to provide the chemistry information of selective amination pathways from bio-based unsaturated acids.</p> <p>This work focused on the ammonolysis of more reactive acid derivative, esters, to demonstrate the ammonolysis reaction pathways. Dimethyl fumarate ammonolysis was conducted in both an ammonium hydroxide solution and an ammonia/methanol solution, the side reactions—hydrolysis and conjugate addition—were discussed respectively. We concluded that the conjugate addition reactivity differences between esters and amides can simplify the ammonolysis and conjugate addition into competing reactions. Additionally, we showed that temperature is a key factor to improve the yield of the unsaturated by reducing the side reaction.</p> <p>More esters were tested to study different structural effects in ammonolysis reactions. The selectivity differences between geometric isomers were addressed by comparing dimethyl fumarate and dimethyl maleate ammonolysis. To demonstrate the feasibility of producing unsaturated amides, dimethyl 3-hexedioate was tested. A higher selectivity to unsaturated amide had been achieved. Finally, a hypothesis that unsaturated bonds near the ester groups accelerate the ester ammonolysis had been made.</p>
dc.format.mimetype application/pdf
dc.identifier archive/lib.dr.iastate.edu/etd/17244/
dc.identifier.articleid 8251
dc.identifier.contextkey 15016354
dc.identifier.s3bucket isulib-bepress-aws-west
dc.identifier.submissionpath etd/17244
dc.identifier.uri https://dr.lib.iastate.edu/handle/20.500.12876/31427
dc.language.iso en
dc.source.bitstream archive/lib.dr.iastate.edu/etd/17244/Lin_iastate_0097M_17725.pdf|||Fri Jan 14 21:19:11 UTC 2022
dc.subject.disciplines Chemical Engineering
dc.title Selective ammonolysis of carboxylic acid derivatives
dc.type thesis en_US
dc.type.genre thesis en_US
dspace.entity.type Publication
relation.isOrgUnitOfPublication 86545861-382c-4c15-8c52-eb8e9afe6b75
thesis.degree.discipline Chemical and Biological Engineering
thesis.degree.level thesis
thesis.degree.name Master of Science
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