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Diastereoselective and Enantioselective Catalysis for Sustainable Synthesis of Carbohydrates and Heterocycles
Diastereoselective and Enantioselective Catalysis for Sustainable Synthesis of Carbohydrat...
Diastereoselective and Enantioselective Catalysis for Sustainable Synthesis of Carbohydrates and Heterocycles

상세정보

자료유형  
 학위논문 서양
최종처리일시  
20250211152954
ISBN  
9798384042358
DDC  
547
저자명  
Zhelavskyi, Oleksii.
서명/저자  
Diastereoselective and Enantioselective Catalysis for Sustainable Synthesis of Carbohydrates and Heterocycles
발행사항  
[Sl] : University of Michigan, 2024
발행사항  
Ann Arbor : ProQuest Dissertations & Theses, 2024
형태사항  
333 p
주기사항  
Source: Dissertations Abstracts International, Volume: 86-03, Section: A.
주기사항  
Advisor: Nagorny, Pavel;Zimmerman, Paul M.
학위논문주기  
Thesis (Ph.D.)--University of Michigan, 2024.
초록/해제  
요약The development of new catalytic methods has undoubtedly played a crucial role in the recent rapid growth of chemical industries, especially in the pharmaceutical research and process development. Novel chiral catalytic methods have drastically improved the access to complex chiral organic molecules such as oxygen- and nitrogen-based heterocyclic compounds. These compounds have a long history of being essential building blocks for medicinal chemistry and numerous therapeutic agents contain chiral heterocyclic motifs including carbohydrates. This dissertation is focused on the development and mechanistic studies of regioselective modifications of trans-2,3-equatorial diols in carbohydrate molecules under immobilized CPA catalysis. Chiral Phosphoric Acids (CPAs) represent a particularly prospective subclass of chiral catalysts due to their versatility in catalyzing a broad spectrum of organic reactions. Combining stereoselective catalysis with immobilized CPAs and continuous flow methods we managed to improve the sustainability and achieve streamlined generation of chiral nitrogen-containing heterocycles with efficient catalyst recycling. Finally, based on theoretical mechanistic studies we explored the reactivity of fused previously pure studied aziridinoquinoxalines as useful precursors for the generation of aromatic aziridine ylides under photochemical energy transfer catalysis.Chapter 1 introduces various "green"-chemistry methods such as flow chemistry and photochemical catalysis used in this dissertation for developing sustainable catalytic protocols. In addition, this chapter describes the principles of CPA catalysis and recent progress toward the synthesis and application of immobilized CPA catalysts.Chapter 2 describes the application of (R)-BINOL- and (S)-SPINOL-based CPA catalysts incorporated into a polymer matrix for regioselective acetalization of monosaccharides with enol ethers. The QM/MM model based on the CHARMM force field and DFT method is developed for reaction potential energy surface exploration to investigate potential mechanisms of CPA-catalyzed regioselective acetalization. In combination with the experimental NMR studies two possible temperature-dependent mechanisms controlling regioselectivity of the acetalization were postulated.Chapter 3 details our efforts to improve the sustainability of the CPA-catalyzed transfer hydrogenation of aromatic heterocycles with Hantzsch esters. We designed the continuous flow system with immobilized CPA placed in the packed-bed reactor for performing enantioselective reduction of quinolines and 1,4-benzoxazines. The developed protocol allows large-scale and effective transfer hydrogenation with easily recyclable catalysts as well as improve enantioselectivity of the process.Chapter 4 provides an overview of the aziridinoquinoxalines properties and their application for ylide generation via the ring-opening reaction of the aziridine cycle. Theoretical investigations using DFT and TD-DFT methods assisted in the development of a photochemical energy transfer catalytic system to perform in-situ azomethine ylides synthesis. As a result, we demonstrated that cooperative Ir(III)/Cu(I) dual catalysis can be effectively used for generation and trapping generated ylides via asymmetric alkynylation reaction.Appendix A describes the initial development of enantioselective transfer hydrogenation with Hantzsch esters under CPA catalysis to achieve parallel kinetic resolution of aziridinoquinoxalines.
일반주제명  
Organic chemistry
일반주제명  
Chemistry
일반주제명  
Analytical chemistry
일반주제명  
Sustainability
키워드  
Sustainable chiral catalysis
키워드  
Immobilized chiral phosphoric acids
키워드  
Heterocyclic chemistry
키워드  
Photo and flow chemistry
키워드  
Chiral Phosphoric Acids
기타저자  
University of Michigan Chemistry
기본자료저록  
Dissertations Abstracts International. 86-03A.
전자적 위치 및 접속  
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■0820  ▼a547
■1001  ▼aZhelavskyi,  Oleksii.
■24510▼aDiastereoselective  and  Enantioselective  Catalysis  for  Sustainable  Synthesis  of  Carbohydrates  and  Heterocycles
■260    ▼a[Sl]▼bUniversity  of  Michigan▼c2024
■260  1▼aAnn  Arbor▼bProQuest  Dissertations  &  Theses▼c2024
■300    ▼a333  p
■500    ▼aSource:  Dissertations  Abstracts  International,  Volume:  86-03,  Section:  A.
■500    ▼aAdvisor:  Nagorny,  Pavel;Zimmerman,  Paul  M.
■5021  ▼aThesis  (Ph.D.)--University  of  Michigan,  2024.
■520    ▼aThe  development  of  new  catalytic  methods  has  undoubtedly  played  a  crucial  role  in  the  recent  rapid  growth  of  chemical  industries,  especially  in  the  pharmaceutical  research  and  process  development.  Novel  chiral  catalytic  methods  have  drastically  improved  the  access  to  complex  chiral  organic  molecules  such  as  oxygen-  and  nitrogen-based  heterocyclic  compounds.  These  compounds  have  a  long  history  of  being  essential  building  blocks  for  medicinal  chemistry  and  numerous  therapeutic  agents  contain  chiral  heterocyclic  motifs  including  carbohydrates.  This  dissertation  is  focused  on  the  development  and  mechanistic  studies  of  regioselective  modifications  of  trans-2,3-equatorial  diols  in  carbohydrate  molecules  under  immobilized  CPA  catalysis.  Chiral  Phosphoric  Acids  (CPAs)  represent  a  particularly  prospective  subclass  of  chiral  catalysts  due  to  their  versatility  in  catalyzing  a  broad  spectrum  of  organic  reactions.  Combining  stereoselective  catalysis  with  immobilized  CPAs  and  continuous  flow  methods  we  managed  to  improve  the  sustainability  and  achieve  streamlined  generation  of  chiral  nitrogen-containing  heterocycles  with  efficient  catalyst  recycling.  Finally,  based  on  theoretical  mechanistic  studies  we  explored  the  reactivity  of  fused  previously  pure  studied  aziridinoquinoxalines  as  useful  precursors  for  the  generation  of  aromatic  aziridine  ylides  under  photochemical  energy  transfer  catalysis.Chapter  1  introduces  various  "green"-chemistry  methods  such  as  flow  chemistry  and  photochemical  catalysis  used  in  this  dissertation  for  developing  sustainable  catalytic  protocols.  In  addition,  this  chapter  describes  the  principles  of  CPA  catalysis  and  recent  progress  toward  the  synthesis  and  application  of  immobilized  CPA  catalysts.Chapter  2  describes  the  application  of  (R)-BINOL-  and  (S)-SPINOL-based  CPA  catalysts  incorporated  into  a  polymer  matrix  for  regioselective  acetalization  of  monosaccharides  with  enol  ethers.  The  QM/MM  model  based  on  the  CHARMM  force  field  and  DFT  method  is  developed  for  reaction  potential  energy  surface  exploration  to  investigate  potential  mechanisms  of  CPA-catalyzed  regioselective  acetalization.  In  combination  with  the  experimental  NMR  studies  two  possible  temperature-dependent  mechanisms  controlling  regioselectivity  of  the  acetalization  were  postulated.Chapter  3  details  our  efforts  to  improve  the  sustainability  of  the  CPA-catalyzed  transfer  hydrogenation  of  aromatic  heterocycles  with  Hantzsch  esters.  We  designed  the  continuous  flow  system  with  immobilized  CPA  placed  in  the  packed-bed  reactor  for  performing  enantioselective  reduction  of  quinolines  and  1,4-benzoxazines.  The  developed  protocol  allows  large-scale  and  effective  transfer  hydrogenation  with  easily  recyclable  catalysts  as  well  as  improve  enantioselectivity  of  the  process.Chapter  4  provides  an  overview  of  the  aziridinoquinoxalines  properties  and  their  application  for  ylide  generation  via  the  ring-opening  reaction  of  the  aziridine  cycle.  Theoretical  investigations  using  DFT  and  TD-DFT  methods  assisted  in  the  development  of  a  photochemical  energy  transfer  catalytic  system  to  perform  in-situ  azomethine  ylides  synthesis.  As  a  result,  we  demonstrated  that  cooperative  Ir(III)/Cu(I)  dual  catalysis  can  be  effectively  used  for  generation  and  trapping  generated  ylides  via  asymmetric  alkynylation  reaction.Appendix  A  describes  the  initial  development  of  enantioselective  transfer  hydrogenation  with  Hantzsch  esters  under  CPA  catalysis  to  achieve  parallel  kinetic  resolution  of  aziridinoquinoxalines.
■590    ▼aSchool  code:  0127.
■650  4▼aOrganic  chemistry
■650  4▼aChemistry
■650  4▼aAnalytical  chemistry
■650  4▼aSustainability
■653    ▼aSustainable  chiral  catalysis
■653    ▼aImmobilized  chiral  phosphoric  acids
■653    ▼aHeterocyclic  chemistry
■653    ▼aPhoto  and  flow  chemistry
■653    ▼aChiral  Phosphoric  Acids
■690    ▼a0490
■690    ▼a0640
■690    ▼a0486
■690    ▼a0485
■71020▼aUniversity  of  Michigan▼bChemistry.
■7730  ▼tDissertations  Abstracts  International▼g86-03A.
■790    ▼a0127
■791    ▼aPh.D.
■792    ▼a2024
■793    ▼aEnglish
■85640▼uhttp://www.riss.kr/pdu/ddodLink.do?id=T17164375▼nKERIS▼z이  자료의  원문은  한국교육학술정보원에서  제공합니다.

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