Progress towards the asymmetric synthesis of nitiol : construction of the 1-hydroxy derivatives
The asymmetric synthesis of nitiol was proposed. We employed a convergent approach where the 12-membered B-ring was constructed at a late stage via the sequential coupling of two cyclopentane fragments. For the A-ring fragment, the initial stereochemistry was set using the Sharpless asymmetric e...
Main Author: | |
---|---|
Language: | English |
Published: |
2009
|
Online Access: | http://hdl.handle.net/2429/17108 |
id |
ndltd-UBC-oai-circle.library.ubc.ca-2429-17108 |
---|---|
record_format |
oai_dc |
spelling |
ndltd-UBC-oai-circle.library.ubc.ca-2429-171082018-01-05T17:38:48Z Progress towards the asymmetric synthesis of nitiol : construction of the 1-hydroxy derivatives Wilson, Michael S. The asymmetric synthesis of nitiol was proposed. We employed a convergent approach where the 12-membered B-ring was constructed at a late stage via the sequential coupling of two cyclopentane fragments. For the A-ring fragment, the initial stereochemistry was set using the Sharpless asymmetric epoxidation (94%ee) and the quaternary center was formed through a stereoselective siloxyepoxide rearrangement. The contiguous stereocenters were established using a Pauson-Khand [2+2+1] cycloaddition/ Norrish Type I photofragmentation sequence. This approach utilized the conformational bias of a bicyclic system to affect stereochemical relay over the three contiguous stereocenters. For the C-ring fragment, the initial stereocenter was set using a Sharpless kinetic resolution (92%ee). The chiral allylic alcohol was converted to the allylic ester and a diastereoselective Ireland Claisen rearrangement set the two contiguous stereocenters. Elaboration of the resulting acid followed by ringclosing metathesis furnished the cyclopentenone and the vinyl triflate was accessed through a conjugate reduction with concomitant enolate trapping. The A-ring and C-ring fragments were coupled using a Cu-mediated Stilletype cross-coupling reaction. Several macrocyclization options were investigated and eventually the Nozaki-Hiyama-Kishi macrocyclization was successful. Despite our best efforts, the deoxygenation of the resulting allylic alcohol was not achieved. Consequently, this research has resulted in the asymmetric syntheses of (1/?)- and (IS)-hydroxynitiol, in 29 steps (longest linear sequence) with a 5.1% over-all yield (2.55% of each diastereomer). [Chemical Diagrams] Science, Faculty of Chemistry, Department of Graduate 2009-12-23T00:48:09Z 2009-12-23T00:48:09Z 2005 2005-11 Text Thesis/Dissertation http://hdl.handle.net/2429/17108 eng For non-commercial purposes only, such as research, private study and education. Additional conditions apply, see Terms of Use https://open.library.ubc.ca/terms_of_use. |
collection |
NDLTD |
language |
English |
sources |
NDLTD |
description |
The asymmetric synthesis of nitiol was proposed. We employed a
convergent approach where the 12-membered B-ring was constructed at a late
stage via the sequential coupling of two cyclopentane fragments.
For the A-ring fragment, the initial stereochemistry was set using the
Sharpless asymmetric epoxidation (94%ee) and the quaternary center was
formed through a stereoselective siloxyepoxide rearrangement. The contiguous
stereocenters were established using a Pauson-Khand [2+2+1] cycloaddition/
Norrish Type I photofragmentation sequence. This approach utilized the
conformational bias of a bicyclic system to affect stereochemical relay over the
three contiguous stereocenters.
For the C-ring fragment, the initial stereocenter was set using a Sharpless
kinetic resolution (92%ee). The chiral allylic alcohol was converted to the allylic
ester and a diastereoselective Ireland Claisen rearrangement set the two
contiguous stereocenters. Elaboration of the resulting acid followed by ringclosing
metathesis furnished the cyclopentenone and the vinyl triflate was
accessed through a conjugate reduction with concomitant enolate trapping.
The A-ring and C-ring fragments were coupled using a Cu-mediated Stilletype
cross-coupling reaction. Several macrocyclization options were investigated
and eventually the Nozaki-Hiyama-Kishi macrocyclization was successful.
Despite our best efforts, the deoxygenation of the resulting allylic alcohol was not
achieved. Consequently, this research has resulted in the asymmetric syntheses
of (1/?)- and (IS)-hydroxynitiol, in 29 steps (longest linear sequence) with a 5.1%
over-all yield (2.55% of each diastereomer). [Chemical Diagrams] === Science, Faculty of === Chemistry, Department of === Graduate |
author |
Wilson, Michael S. |
spellingShingle |
Wilson, Michael S. Progress towards the asymmetric synthesis of nitiol : construction of the 1-hydroxy derivatives |
author_facet |
Wilson, Michael S. |
author_sort |
Wilson, Michael S. |
title |
Progress towards the asymmetric synthesis of nitiol : construction of the 1-hydroxy derivatives |
title_short |
Progress towards the asymmetric synthesis of nitiol : construction of the 1-hydroxy derivatives |
title_full |
Progress towards the asymmetric synthesis of nitiol : construction of the 1-hydroxy derivatives |
title_fullStr |
Progress towards the asymmetric synthesis of nitiol : construction of the 1-hydroxy derivatives |
title_full_unstemmed |
Progress towards the asymmetric synthesis of nitiol : construction of the 1-hydroxy derivatives |
title_sort |
progress towards the asymmetric synthesis of nitiol : construction of the 1-hydroxy derivatives |
publishDate |
2009 |
url |
http://hdl.handle.net/2429/17108 |
work_keys_str_mv |
AT wilsonmichaels progresstowardstheasymmetricsynthesisofnitiolconstructionofthe1hydroxyderivatives |
_version_ |
1718590437574311936 |