TY - JOUR
T1 - Reversal of regioselectivity and enhancement of rates of nitrile oxide cycloadditions through transient attachment of dipolarophiles to cyclodextrins
AU - Barr, Lorna
AU - Lincoln, Stephen F.
AU - Easton, Christopher J.
PY - 2006/11/15
Y1 - 2006/11/15
N2 - The reactions of nitrile oxides with monosubstituted dipolarophiles, such as propiolamide, typically afford proportionally 80% or more of the 3,5-disubstituted cycloadducts. By contrast, the reactions of 6 A-deoxy-6A-propynamido-β-cyclodextrin with 4-tert-butylbenzonitrile oxide and 4-phenylbenzonitrile oxide afford >90% and approximately 85% of the corresponding 3,4-disubstituted isoxazoles, respectively. As well as reversing the regioselectivity, the cyclodextrin increases the rates of these cycloadditions. The extent of the acceleration is up to more than three orders of magnitude for the production of the cycload duct preferred by the cyclodextrin, but even the rate of reaction to give the less favored regioisomer is increased. With 6A-deoxy-6A- propynamido-β-cyclodextrin, the cycloadducts are not easily separated from the cyclodextrin, as the amide bond is not readily cleaved. In comparison, the regioselectivity of the cycloadditions of 4-tert-butylbenzonitrile oxide with acrylic acid, methacrylic acid, and crotonic acid is also altered by formation of the corre spending cyclodextrin esters, by factors of 500, >10, and >100, respectively. The rates of cycloaddition are also increased by up to 475 times, and in these cases the products of cycloaddition are readily released from the cyclodextrin through ester hydrolysis. Incorporating these processes into a reaction cycle, acylation of β-cyclodextrin with p-nitrophenyl acrylate and subsequent treatment first with 4-fert-butyl-benzonitrile oxide and then with base, the latter to catalyze ester hydrolysis and regenerate the β-cyclodextrin, affords proportionally fivefold more of the 3,4-disubstituted isoxazoline than is produced directly from acrylic acid.
AB - The reactions of nitrile oxides with monosubstituted dipolarophiles, such as propiolamide, typically afford proportionally 80% or more of the 3,5-disubstituted cycloadducts. By contrast, the reactions of 6 A-deoxy-6A-propynamido-β-cyclodextrin with 4-tert-butylbenzonitrile oxide and 4-phenylbenzonitrile oxide afford >90% and approximately 85% of the corresponding 3,4-disubstituted isoxazoles, respectively. As well as reversing the regioselectivity, the cyclodextrin increases the rates of these cycloadditions. The extent of the acceleration is up to more than three orders of magnitude for the production of the cycload duct preferred by the cyclodextrin, but even the rate of reaction to give the less favored regioisomer is increased. With 6A-deoxy-6A- propynamido-β-cyclodextrin, the cycloadducts are not easily separated from the cyclodextrin, as the amide bond is not readily cleaved. In comparison, the regioselectivity of the cycloadditions of 4-tert-butylbenzonitrile oxide with acrylic acid, methacrylic acid, and crotonic acid is also altered by formation of the corre spending cyclodextrin esters, by factors of 500, >10, and >100, respectively. The rates of cycloaddition are also increased by up to 475 times, and in these cases the products of cycloaddition are readily released from the cyclodextrin through ester hydrolysis. Incorporating these processes into a reaction cycle, acylation of β-cyclodextrin with p-nitrophenyl acrylate and subsequent treatment first with 4-fert-butyl-benzonitrile oxide and then with base, the latter to catalyze ester hydrolysis and regenerate the β-cyclodextrin, affords proportionally fivefold more of the 3,4-disubstituted isoxazoline than is produced directly from acrylic acid.
KW - Cycloaddition
KW - Cyclodextrins
KW - Inclusion compounds
KW - Molecular reactors
KW - Regioselectivity
UR - http://www.scopus.com/inward/record.url?scp=33751314587&partnerID=8YFLogxK
U2 - 10.1002/chem.200600627
DO - 10.1002/chem.200600627
M3 - Article
SN - 0947-6539
VL - 12
SP - 8571
EP - 8580
JO - Chemistry - A European Journal
JF - Chemistry - A European Journal
IS - 33
ER -