Strategies for the Stereoselective Synthesis of Carbon Quaternary Centers via Transition Metal-Catalyzed Alkylation of Enolate Compounds

<p>Notwithstanding advances in modern chemical methods, the selective installation of sterically encumbered carbon stereocenters, in particular all-carbon quaternary centers, remains an unsolved problem in organic chemistry. The prevalence of all-carbon quaternary centers in biologically acti...

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Main Author: Reeves, Corey Michael
Format: Others
Published: 2015
Online Access:https://thesis.library.caltech.edu/8869/134/Corey-Reeves-2015-FullThesis.pdf
https://thesis.library.caltech.edu/8869/116/Thesis%20frontmatter.pdf
https://thesis.library.caltech.edu/8869/77/CHAPTER%201.pdf
https://thesis.library.caltech.edu/8869/5/appendix%201%202.pdf
https://thesis.library.caltech.edu/8869/81/CHAPTER%202.pdf
https://thesis.library.caltech.edu/8869/11/appendix%202%201.pdf
https://thesis.library.caltech.edu/8869/85/CHAPTER%203.pdf
https://thesis.library.caltech.edu/8869/140/Corey-Reeves-2015-thesis-appendix%203.pdf
https://thesis.library.caltech.edu/8869/57/appendix%204.pdf
https://thesis.library.caltech.edu/8869/86/CHAPTER%204.pdf
https://thesis.library.caltech.edu/8869/51/Appendix%205%20mech.pdf
https://thesis.library.caltech.edu/8869/33/appendix%206%201.pdf
https://thesis.library.caltech.edu/8869/58/Appendix%207%20xray.pdf
https://thesis.library.caltech.edu/8869/122/Appendix%208%20aryl.pdf
https://thesis.library.caltech.edu/8869/60/appendix%209%20lingzhiol.pdf
https://thesis.library.caltech.edu/8869/44/appendix%2010%203.pdf
https://thesis.library.caltech.edu/8869/87/Thesis%20backmatter.pdf
Reeves, Corey Michael (2015) Strategies for the Stereoselective Synthesis of Carbon Quaternary Centers via Transition Metal-Catalyzed Alkylation of Enolate Compounds. Dissertation (Ph.D.), California Institute of Technology. doi:10.7907/Z9VX0DGH. https://resolver.caltech.edu/CaltechTHESIS:05192015-131629900 <https://resolver.caltech.edu/CaltechTHESIS:05192015-131629900>
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description <p>Notwithstanding advances in modern chemical methods, the selective installation of sterically encumbered carbon stereocenters, in particular all-carbon quaternary centers, remains an unsolved problem in organic chemistry. The prevalence of all-carbon quaternary centers in biologically active natural products and pharmaceutical compounds provides a strong impetus to address current limitations in the state of the art of their generation. This thesis presents four related projects, all of which share in the goal of constructing highly-congested carbon centers in a stereoselective manner, and in the use of transition-metal catalyzed alkylation as a means to address that goal.</p> <p>The first research described is an extension of allylic alkylation methodology previously developed in the Stoltz group to small, strained rings. This research constitutes the first transition metal-catalyzed enantioselective α-alkylation of cyclobutanones. Under Pd-catalysis, this chemistry affords all–carbon α-quaternary cyclobutanones in good to excellent yields and enantioselectivities.</p> <p>Next is described our development of a (trimethylsilyl)ethyl β-ketoester class of enolate precursors, and their application in palladium–catalyzed asymmetric allylic alkylation to yield a variety of α-quaternary ketones and lactams. Independent coupling partner synthesis engenders enhanced allyl substrate scope relative to allyl β-ketoester substrates; highly functionalized α-quaternary ketones generated by the union of our fluoride-triggered β-ketoesters and sensitive allylic alkylation coupling partners serve to demonstrate the utility of this method for complex fragment coupling.</p> <p>Lastly, our development of an Ir-catalyzed asymmetric allylic alkylation of cyclic β-ketoesters to afford highly congested, vicinal stereocenters comprised of tertiary and all-carbon quaternary centers with outstanding regio-, diastereo-, and enantiocontrol is detailed. Implementation of a subsequent Pd-catalyzed alkylation affords dialkylated products with pinpoint stereochemical control of both chiral centers. The chemistry is then extended to include acyclic β-ketoesters and similar levels of selective and functional group tolerance are observed. Critical to the successful development of this method was the employment of iridium catalysis in concert with N-aryl-phosphoramidite ligands.</p>
author Reeves, Corey Michael
spellingShingle Reeves, Corey Michael
Strategies for the Stereoselective Synthesis of Carbon Quaternary Centers via Transition Metal-Catalyzed Alkylation of Enolate Compounds
author_facet Reeves, Corey Michael
author_sort Reeves, Corey Michael
title Strategies for the Stereoselective Synthesis of Carbon Quaternary Centers via Transition Metal-Catalyzed Alkylation of Enolate Compounds
title_short Strategies for the Stereoselective Synthesis of Carbon Quaternary Centers via Transition Metal-Catalyzed Alkylation of Enolate Compounds
title_full Strategies for the Stereoselective Synthesis of Carbon Quaternary Centers via Transition Metal-Catalyzed Alkylation of Enolate Compounds
title_fullStr Strategies for the Stereoselective Synthesis of Carbon Quaternary Centers via Transition Metal-Catalyzed Alkylation of Enolate Compounds
title_full_unstemmed Strategies for the Stereoselective Synthesis of Carbon Quaternary Centers via Transition Metal-Catalyzed Alkylation of Enolate Compounds
title_sort strategies for the stereoselective synthesis of carbon quaternary centers via transition metal-catalyzed alkylation of enolate compounds
publishDate 2015
url https://thesis.library.caltech.edu/8869/134/Corey-Reeves-2015-FullThesis.pdf
https://thesis.library.caltech.edu/8869/116/Thesis%20frontmatter.pdf
https://thesis.library.caltech.edu/8869/77/CHAPTER%201.pdf
https://thesis.library.caltech.edu/8869/5/appendix%201%202.pdf
https://thesis.library.caltech.edu/8869/81/CHAPTER%202.pdf
https://thesis.library.caltech.edu/8869/11/appendix%202%201.pdf
https://thesis.library.caltech.edu/8869/85/CHAPTER%203.pdf
https://thesis.library.caltech.edu/8869/140/Corey-Reeves-2015-thesis-appendix%203.pdf
https://thesis.library.caltech.edu/8869/57/appendix%204.pdf
https://thesis.library.caltech.edu/8869/86/CHAPTER%204.pdf
https://thesis.library.caltech.edu/8869/51/Appendix%205%20mech.pdf
https://thesis.library.caltech.edu/8869/33/appendix%206%201.pdf
https://thesis.library.caltech.edu/8869/58/Appendix%207%20xray.pdf
https://thesis.library.caltech.edu/8869/122/Appendix%208%20aryl.pdf
https://thesis.library.caltech.edu/8869/60/appendix%209%20lingzhiol.pdf
https://thesis.library.caltech.edu/8869/44/appendix%2010%203.pdf
https://thesis.library.caltech.edu/8869/87/Thesis%20backmatter.pdf
Reeves, Corey Michael (2015) Strategies for the Stereoselective Synthesis of Carbon Quaternary Centers via Transition Metal-Catalyzed Alkylation of Enolate Compounds. Dissertation (Ph.D.), California Institute of Technology. doi:10.7907/Z9VX0DGH. https://resolver.caltech.edu/CaltechTHESIS:05192015-131629900 <https://resolver.caltech.edu/CaltechTHESIS:05192015-131629900>
work_keys_str_mv AT reevescoreymichael strategiesforthestereoselectivesynthesisofcarbonquaternarycentersviatransitionmetalcatalyzedalkylationofenolatecompounds
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spelling ndltd-CALTECH-oai-thesis.library.caltech.edu-88692019-10-05T03:03:30Z Strategies for the Stereoselective Synthesis of Carbon Quaternary Centers via Transition Metal-Catalyzed Alkylation of Enolate Compounds Reeves, Corey Michael <p>Notwithstanding advances in modern chemical methods, the selective installation of sterically encumbered carbon stereocenters, in particular all-carbon quaternary centers, remains an unsolved problem in organic chemistry. The prevalence of all-carbon quaternary centers in biologically active natural products and pharmaceutical compounds provides a strong impetus to address current limitations in the state of the art of their generation. This thesis presents four related projects, all of which share in the goal of constructing highly-congested carbon centers in a stereoselective manner, and in the use of transition-metal catalyzed alkylation as a means to address that goal.</p> <p>The first research described is an extension of allylic alkylation methodology previously developed in the Stoltz group to small, strained rings. This research constitutes the first transition metal-catalyzed enantioselective α-alkylation of cyclobutanones. Under Pd-catalysis, this chemistry affords all–carbon α-quaternary cyclobutanones in good to excellent yields and enantioselectivities.</p> <p>Next is described our development of a (trimethylsilyl)ethyl β-ketoester class of enolate precursors, and their application in palladium–catalyzed asymmetric allylic alkylation to yield a variety of α-quaternary ketones and lactams. Independent coupling partner synthesis engenders enhanced allyl substrate scope relative to allyl β-ketoester substrates; highly functionalized α-quaternary ketones generated by the union of our fluoride-triggered β-ketoesters and sensitive allylic alkylation coupling partners serve to demonstrate the utility of this method for complex fragment coupling.</p> <p>Lastly, our development of an Ir-catalyzed asymmetric allylic alkylation of cyclic β-ketoesters to afford highly congested, vicinal stereocenters comprised of tertiary and all-carbon quaternary centers with outstanding regio-, diastereo-, and enantiocontrol is detailed. Implementation of a subsequent Pd-catalyzed alkylation affords dialkylated products with pinpoint stereochemical control of both chiral centers. The chemistry is then extended to include acyclic β-ketoesters and similar levels of selective and functional group tolerance are observed. Critical to the successful development of this method was the employment of iridium catalysis in concert with N-aryl-phosphoramidite ligands.</p> 2015 Thesis NonPeerReviewed application/pdf https://thesis.library.caltech.edu/8869/134/Corey-Reeves-2015-FullThesis.pdf application/pdf https://thesis.library.caltech.edu/8869/116/Thesis%20frontmatter.pdf application/pdf https://thesis.library.caltech.edu/8869/77/CHAPTER%201.pdf application/pdf https://thesis.library.caltech.edu/8869/5/appendix%201%202.pdf application/pdf https://thesis.library.caltech.edu/8869/81/CHAPTER%202.pdf application/pdf https://thesis.library.caltech.edu/8869/11/appendix%202%201.pdf application/pdf https://thesis.library.caltech.edu/8869/85/CHAPTER%203.pdf application/pdf https://thesis.library.caltech.edu/8869/140/Corey-Reeves-2015-thesis-appendix%203.pdf application/pdf https://thesis.library.caltech.edu/8869/57/appendix%204.pdf application/pdf https://thesis.library.caltech.edu/8869/86/CHAPTER%204.pdf application/pdf https://thesis.library.caltech.edu/8869/51/Appendix%205%20mech.pdf application/pdf https://thesis.library.caltech.edu/8869/33/appendix%206%201.pdf application/pdf https://thesis.library.caltech.edu/8869/58/Appendix%207%20xray.pdf application/pdf https://thesis.library.caltech.edu/8869/122/Appendix%208%20aryl.pdf application/pdf https://thesis.library.caltech.edu/8869/60/appendix%209%20lingzhiol.pdf application/pdf https://thesis.library.caltech.edu/8869/44/appendix%2010%203.pdf application/pdf https://thesis.library.caltech.edu/8869/87/Thesis%20backmatter.pdf https://resolver.caltech.edu/CaltechTHESIS:05192015-131629900 Reeves, Corey Michael (2015) Strategies for the Stereoselective Synthesis of Carbon Quaternary Centers via Transition Metal-Catalyzed Alkylation of Enolate Compounds. Dissertation (Ph.D.), California Institute of Technology. doi:10.7907/Z9VX0DGH. https://resolver.caltech.edu/CaltechTHESIS:05192015-131629900 <https://resolver.caltech.edu/CaltechTHESIS:05192015-131629900> https://thesis.library.caltech.edu/8869/