Highly Enantioselective Cross-Aldol Reactions of Acetaldehyde Mediated by a Dual Catalytic System Operating under Site Isolation

Author

Fan, Xinyuan

Rodríguez-Escrich, Carles

Wan, Shoulei

Sayalero, Sonia

Pericàs, Miquel A.

Publication date

2014



Abstract

<p style="text-align: justify;"> Polystyrene-supported (PS) diarylprolinol catalysts <strong>1a</strong> (Ar = phenyl) and <strong>1b</strong> (Ar = 3,5-bis(trifluoromethyl)-phenyl) have been developed. Operating under site-isolation conditions, PS-1 a/1b worked compatibly with PS- bound sulfonic acid catalyst <strong>2</strong> to promote deoligomerization of paraldehyde and subsequent cross-aldol reactions of the resulting acetaldehyde in one pot, affording aldol products in high yields with excellent enantioselectivities. The effect of water on the performance of the catalytic system has been studied and its optimal amount (0.5 equiv) has been determined. The dual catalytic system (<strong>1</strong>/<strong>2</strong>) allows repeated recycling and reuse (10 cycles). The potential of this methodology is demonstrated by a two- step synthesis of a phenoperidine analogue (68 % overall yield ; 98 % ee) and by the preparation of highly enantioenriched 1,3-diols <strong>4</strong> and 3-methylamino-1-arylpropanols <strong>5</strong>, key intermediates in the synthesis of a variety of druglike structures.</p>

Document Type

Article

Language

English

Subject

acetaldehyde; cross-aldol; recycling; site-isolation; wolf and lamb

Publisher

Wiley-VCH

Version of

Chemistry A European Journal

Grant Agreement Number

SEV-2013-0319

CTQ2012-38594-C02-01

2014 SGR827

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Documents

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Rights

© WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim

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