Chiral pyridine-N-heterocyclic carbene based palladacycle for homogeneous catalysis : synthesis, characterization and application.
Optical resolution (using enantiopure amino acids) was used as a mean to resolve a racemic six-membered bidentate pyridine-N-heterocyclic based palladacycle. Two different solvent systems were found to be able to crystallize out one of the diastereomer, (SC,SC)-5 successfully, leaving the mother liq...
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sg-ntu-dr.10356-408212023-02-28T23:15:37Z Chiral pyridine-N-heterocyclic carbene based palladacycle for homogeneous catalysis : synthesis, characterization and application. Ng, Kim Hong. Leung Pak Hing School of Physical and Mathematical Sciences DRNTU::Science::Chemistry::Organic chemistry::Organometallic compounds Optical resolution (using enantiopure amino acids) was used as a mean to resolve a racemic six-membered bidentate pyridine-N-heterocyclic based palladacycle. Two different solvent systems were found to be able to crystallize out one of the diastereomer, (SC,SC)-5 successfully, leaving the mother liquor to be enriched with the other diastereomer, (RC,SC)-5. After which, the optically pure (R)-4 and (S)-4 were achieved via the removal of the chiral auxillary by stirring in aqueous 1M hydrochloric acid. Crystallizations of the (R)-4 and (S)-4 dichloropalladacylce were ineffective due to the insufficient solubility of the palladacycles. Instead, crystallization of (R)-6 and (S)-6 were performed. The absolute configurations of all the crystals were determined by X-ray diffraction studies. The catalytic activity of (S)-6 was tested in asymmetric allylic alkylation and was compared with four other palladacycles (R)-9, (S)-9, (R)-10 and (S)-10 to study the electronic and solvent effect. Bachelor of Science in Chemistry and Biological Chemistry 2010-06-22T06:34:34Z 2010-06-22T06:34:34Z 2010 2010 Final Year Project (FYP) http://hdl.handle.net/10356/40821 en 41 p. application/pdf |
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DRNTU::Science::Chemistry::Organic chemistry::Organometallic compounds Ng, Kim Hong. Chiral pyridine-N-heterocyclic carbene based palladacycle for homogeneous catalysis : synthesis, characterization and application. |
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Optical resolution (using enantiopure amino acids) was used as a mean to resolve a racemic six-membered bidentate pyridine-N-heterocyclic based palladacycle. Two different solvent systems were found to be able to crystallize out one of the diastereomer, (SC,SC)-5 successfully, leaving the mother liquor to be enriched with the other diastereomer, (RC,SC)-5. After which, the optically pure (R)-4 and (S)-4 were achieved via the removal of the chiral auxillary by stirring in aqueous 1M hydrochloric acid. Crystallizations of the (R)-4 and (S)-4 dichloropalladacylce were ineffective due to the insufficient solubility of the palladacycles. Instead, crystallization of (R)-6 and (S)-6 were performed. The absolute configurations of all the crystals were determined by X-ray diffraction studies.
The catalytic activity of (S)-6 was tested in asymmetric allylic alkylation and was compared with four other palladacycles (R)-9, (S)-9, (R)-10 and (S)-10 to study the electronic and solvent effect. |
author2 |
Leung Pak Hing |
author_facet |
Leung Pak Hing Ng, Kim Hong. |
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Final Year Project |
author |
Ng, Kim Hong. |
author_sort |
Ng, Kim Hong. |
title |
Chiral pyridine-N-heterocyclic carbene based palladacycle for homogeneous catalysis : synthesis, characterization and application. |
title_short |
Chiral pyridine-N-heterocyclic carbene based palladacycle for homogeneous catalysis : synthesis, characterization and application. |
title_full |
Chiral pyridine-N-heterocyclic carbene based palladacycle for homogeneous catalysis : synthesis, characterization and application. |
title_fullStr |
Chiral pyridine-N-heterocyclic carbene based palladacycle for homogeneous catalysis : synthesis, characterization and application. |
title_full_unstemmed |
Chiral pyridine-N-heterocyclic carbene based palladacycle for homogeneous catalysis : synthesis, characterization and application. |
title_sort |
chiral pyridine-n-heterocyclic carbene based palladacycle for homogeneous catalysis : synthesis, characterization and application. |
publishDate |
2010 |
url |
http://hdl.handle.net/10356/40821 |
_version_ |
1759855980506513408 |