1997
DOI: 10.1021/ja964285k
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Development of Highly Enantioselective Polymeric Catalysts Using Rigid and Sterically Regular Chiral Polybinaphthols

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Cited by 93 publications
(45 citation statements)
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“…[12,13] This polymer again showed very low chemoselectivity as well as enantioselectivity. Besides the addition product 7, a side-product, benzyl alcohol, was also generated from the reduction of benzaldehyde.…”
Section: Discussionmentioning
confidence: 97%
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“…[12,13] This polymer again showed very low chemoselectivity as well as enantioselectivity. Besides the addition product 7, a side-product, benzyl alcohol, was also generated from the reduction of benzaldehyde.…”
Section: Discussionmentioning
confidence: 97%
“…In order to improve the catalytic properties of the polymer catalyst, a soluble polymer (R)-8 was prepared by linking the binaphthyl units at the 6,6'-position with phenylene spacers containing flexible hexyloxyl groups through a Suzuki coupling polymerization. [12,13] This polymer was used to catalyze the reaction of benzaldehyde with diethylzinc. Although improvements were seen, both the chemoselectivity and enantioselectivity were still low.…”
Section: Discussionmentioning
confidence: 99%
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“…These polymers were recovered readily by precipitation with methanol and used again without loss of activity and selectivity. [30] A similar approach was followed by Takata and co-workers by using a poly(binaphthyl salen metal complex). [31,32] Salen manganese complexes 33-35 were shown to be capable of oxidizing alkenes, albeit with low enantioselectivity (Scheme 13 a).…”
Section: Helical Polymers That Do Not Contain Chiral Side Chainsmentioning
confidence: 99%