A magnetically recyclable heterogeneous BINOL organocatalyst for the asymmetric aldol reaction

A chiral organocatalyst derived from (R)-1,1′-bi-2-naphthol (BINOL) was developed for immobilisation onto magnetic iron oxide particle (MIOP). This heterogeneous organocatalyst was characterised using infrared spectroscopy (FTIR), thermal gravimetric analysis (TGA) and scanning electron microscope (...

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Main Authors: Lee, Y.K., Tay, K.S., Lee, V.S., Rahman, N.A.
Format: Article
Language:English
Published: 2017
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spelling my.uniten.dspace-35072020-06-25T07:47:39Z A magnetically recyclable heterogeneous BINOL organocatalyst for the asymmetric aldol reaction Lee, Y.K. Tay, K.S. Lee, V.S. Rahman, N.A. A chiral organocatalyst derived from (R)-1,1′-bi-2-naphthol (BINOL) was developed for immobilisation onto magnetic iron oxide particle (MIOP). This heterogeneous organocatalyst was characterised using infrared spectroscopy (FTIR), thermal gravimetric analysis (TGA) and scanning electron microscope (SEM). The performance of BINOL-grafted MIOP (BINOL-MIOP) was then evaluated using aldol reaction between benzaldehydes and cyclic ketones. Comparative studies between homogeneous versus heterogeneous aldol reaction revealed the similar reactivity for both reaction systems. The reaction system mediated by BINOL-MIOP was versatile to produce aldol adducts in moderate-to-good yields (45-99%) from different benzaldehydes and cyclic ketones. In addition, more syn adducts were produced in most cases. Up to 35% ee was observed in anti adducts, despite that a higher 50% ee of anti adduct was observed in the homogeneous reaction system. This observation was supported by the results obtained from the molecular modelling, which revealed the reduced selectivity in the heterogeneous system that was possibly caused by the torsional angle distortion of BINOL after immobilisation. In contrast to the free-BINOL, the distorted-BINOL exhibited lower tendency to form a complex with aldehyde, thereby reducing the selectivity that the free-BINOL could deliver. In addition, the reaction system mediated by BINOL-MIOP was exhibiting an excellent reusability for up to 10 cycles of reactions. © 2015 Elsevier Ltd. All rights reserved. 2017-10-27T06:14:29Z 2017-10-27T06:14:29Z 2015 Article 10.1016/j.apcata.2015.06.004 en Applied Catalysis A: General Volume 502, 29 June 2015, Pages 246-253
institution Universiti Tenaga Nasional
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description A chiral organocatalyst derived from (R)-1,1′-bi-2-naphthol (BINOL) was developed for immobilisation onto magnetic iron oxide particle (MIOP). This heterogeneous organocatalyst was characterised using infrared spectroscopy (FTIR), thermal gravimetric analysis (TGA) and scanning electron microscope (SEM). The performance of BINOL-grafted MIOP (BINOL-MIOP) was then evaluated using aldol reaction between benzaldehydes and cyclic ketones. Comparative studies between homogeneous versus heterogeneous aldol reaction revealed the similar reactivity for both reaction systems. The reaction system mediated by BINOL-MIOP was versatile to produce aldol adducts in moderate-to-good yields (45-99%) from different benzaldehydes and cyclic ketones. In addition, more syn adducts were produced in most cases. Up to 35% ee was observed in anti adducts, despite that a higher 50% ee of anti adduct was observed in the homogeneous reaction system. This observation was supported by the results obtained from the molecular modelling, which revealed the reduced selectivity in the heterogeneous system that was possibly caused by the torsional angle distortion of BINOL after immobilisation. In contrast to the free-BINOL, the distorted-BINOL exhibited lower tendency to form a complex with aldehyde, thereby reducing the selectivity that the free-BINOL could deliver. In addition, the reaction system mediated by BINOL-MIOP was exhibiting an excellent reusability for up to 10 cycles of reactions. © 2015 Elsevier Ltd. All rights reserved.
format Article
author Lee, Y.K.
Tay, K.S.
Lee, V.S.
Rahman, N.A.
spellingShingle Lee, Y.K.
Tay, K.S.
Lee, V.S.
Rahman, N.A.
A magnetically recyclable heterogeneous BINOL organocatalyst for the asymmetric aldol reaction
author_facet Lee, Y.K.
Tay, K.S.
Lee, V.S.
Rahman, N.A.
author_sort Lee, Y.K.
title A magnetically recyclable heterogeneous BINOL organocatalyst for the asymmetric aldol reaction
title_short A magnetically recyclable heterogeneous BINOL organocatalyst for the asymmetric aldol reaction
title_full A magnetically recyclable heterogeneous BINOL organocatalyst for the asymmetric aldol reaction
title_fullStr A magnetically recyclable heterogeneous BINOL organocatalyst for the asymmetric aldol reaction
title_full_unstemmed A magnetically recyclable heterogeneous BINOL organocatalyst for the asymmetric aldol reaction
title_sort magnetically recyclable heterogeneous binol organocatalyst for the asymmetric aldol reaction
publishDate 2017
_version_ 1671342875993964544