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dc.identifier.urihttp://hdl.handle.net/1951/56136
dc.identifier.urihttp://hdl.handle.net/11401/71711
dc.description.sponsorshipThis work is sponsored by the Stony Brook University Graduate School in compliance with the requirements for completion of degree.en_US
dc.formatMonograph
dc.format.mediumElectronic Resourceen_US
dc.language.isoen_US
dc.publisherThe Graduate School, Stony Brook University: Stony Brook, NY.
dc.typeDissertation
dcterms.abstractNatural products and their metabolites isolated from diverse natural origins have been an extraordinary starting place for the research of active pharmaceuticals, agrochemicals and other applications. Core structures of those natural products serve as templates to obtain more potent and selective agents through systematic structure-activity relationship (SAR) studies. A unique feature of natural products is that they often contain complex fused-ring skeletons. However, the traditional synthetic methodologies to access these fused-ring skeletons were not efficient in the ease of synthesis and with atom economy. Therefore, the need to develop more efficient synthetic methods that provide access to fused-ring skeletons is essential. Transition metal-catalyzed cycloaddition reactions have proven to be one of the most efficient methods for natural products synthesis as well as constructing natural product-like and drug-like skeletons in highly selective manner as well as with high atom economy. As part of ongoing studies in the Ojima laboratory on the transition metal- catalyzed carbocyclizations and higher-order cycloaddition reactions, the Rh(I)-catalyzed [2+2+2+1] cycloaddition of triynes was investigated. The reaction of triynes in the presence of [Rh(CO)2Cl]2 and CO (2 atm) gave novel 5-7-n fused tricyclic products. In addition, with carefully design of the triyne substrates, novel colchicinoids can be prepared in short steps. The reaction variables as well as the mechanisms for the formation of these fused ring products are presented.
dcterms.available2012-05-17T12:22:37Z
dcterms.available2015-04-24T14:48:44Z
dcterms.contributorIwao Ojima.en_US
dcterms.contributorFrank W. Fowleren_US
dcterms.contributorRobert C. Kerberen_US
dcterms.contributorRamesh C. Gupta.en_US
dcterms.creatorTeng, Yu HanGary
dcterms.dateAccepted2012-05-17T12:22:37Z
dcterms.dateAccepted2015-04-24T14:48:44Z
dcterms.dateSubmitted2012-05-17T12:22:37Z
dcterms.dateSubmitted2015-04-24T14:48:44Z
dcterms.descriptionDepartment of Chemistryen_US
dcterms.formatMonograph
dcterms.formatApplication/PDFen_US
dcterms.identifierTeng_grad.sunysb_0771E_10526.pdfen_US
dcterms.identifierhttp://hdl.handle.net/1951/56136
dcterms.identifierhttp://hdl.handle.net/11401/71711
dcterms.issued2011-05-01
dcterms.languageen_US
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dcterms.publisherThe Graduate School, Stony Brook University: Stony Brook, NY.
dcterms.subjectOrganic Chemistry
dcterms.subjectCarbon Monoxide, Cycloaddition, Triyne, Tropone
dcterms.titleSynthesis of Novel Fused Tropones and Colchicinoids Through Rh(I)-Catalyzed [2+2+2+1] Cycloaddition of Triynes with Carbon Monoxide
dcterms.typeDissertation


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