REVERSIBILITY OF THE RING-OPENING STEP IN THE ACID-HYDROLYSIS OF CYCLIC ACETOPHENONE ACETALS

被引:16
作者
MCCLELLAND, RA
WATADA, B
LEW, CSQ
机构
[1] Department of Chemistry, University of Toronto, Toronto
来源
JOURNAL OF THE CHEMICAL SOCIETY-PERKIN TRANSACTIONS 2 | 1993年 / 10期
关键词
D O I
10.1039/p29930001723
中图分类号
O62 [有机化学];
学科分类号
070303 ; 081704 ;
摘要
The acid-catalysed hydrolysis of the vinyl ethers alpha-(2-hydroxyethoxy)styrene 1a or alpha-(3-hydroxypropoxy)styrene 1b yields a mixture of acetophenone and a cyclic acetophenone acetal, 2-methyl-2-phenyl-1,3-dioxolane 3a or 2-methyl-2-phenyl-1,3-dioxane 3b. Ratios [acetophenone]: [3] have been determined by HPLC and by UV spectroscopy as 15 (from 1a) and 10 (from 1b). The acetals undergo further hydrolysis, but this is considerably slower than that of the vinyl ethers, and the above numbers represent products of kinetic control. These product ratios are equal to the rate constant ratios k2:k-1 for the partitioning of the oxocarbocations 1-(2-hydroxyethoxy)-1-phenylethyl 2a or 1-(3-hydroxypropoxy)-1-phenylethyl 2b between reaction with solvent water molecules and with the internal hydroxy group. These cations are also formed as intermediates in the hydrolysis of the cyclic acetals 3. That k2 is an order of magnitude greater than k-1 signifies that the rate-limiting step in this hydrolysis is the ring-opening forming the oxocarbocation, and that there is little reversibility in aqueous solutions. The hydrolysis reactions of these cyclic acetals are considerably slower than that of an acyclic analogue, the dimethyl acetal of acetophenone, by factors of 1.0 x 10(3) for 3a and 1.8 x 10(2) for 3b. This study demonstrates that these rate retardations cannot be accounted for by reversibility of the ring-opening step. The presence of the ring results in an inherent decrease in the rate constant for the H catalysed formation of the oxocarbocation.
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页码:1723 / 1727
页数:5
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共 44 条
[11]   MECHANISM AND CATALYSIS FOR HYDROLYSIS OF ACETALS, KETALS, AND ORTHO-ESTERS [J].
CORDES, EH ;
BULL, HG .
CHEMICAL REVIEWS, 1974, 74 (05) :581-603
[12]   INTRAMOLECULAR CARBOXYL GROUP PARTICIPATION IN ACETAL HYDROLYSIS [J].
FIFE, TH ;
ANDERSON, E .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1971, 93 (24) :6610-&
[13]   ACID CATALYZED HYDROLYSIS OF 2-PHENYL-2,4,4,5,5-PENTAMETHYL-1,3-DIOXOLANE AND TETRAMETHYLETHYLENE GLYCOL ACETALS OF AROMATIC AND ALIPHATIC ALDEHYDES [J].
FIFE, TH ;
BROD, LH .
JOURNAL OF ORGANIC CHEMISTRY, 1968, 33 (11) :4136-&
[16]   STERIC EFFECTS IN KETAL HYDROLYSIS [J].
FIFE, TH ;
HAGOPIAN, L .
JOURNAL OF ORGANIC CHEMISTRY, 1966, 31 (06) :1772-&
[17]   GENERAL ACID CATALYSIS OF ACETAL, KETAL, AND ORTHO ESTER HYDROLYSIS [J].
FIFE, TH .
ACCOUNTS OF CHEMICAL RESEARCH, 1972, 5 (08) :264-&
[18]   SUBSTITUENT EFFECTS IN ACETAL HYDROLYSIS [J].
FIFE, TH ;
JAO, LK .
JOURNAL OF ORGANIC CHEMISTRY, 1965, 30 (05) :1492-&
[19]   STOPPED-FLOW TRAPPING OF THE HEMIACETAL INTERMEDIATES OF THE HYDROLYSIS OF ACETALS [J].
FINLEY, RL ;
KUBLER, DG ;
MCCLELLAND, RA .
JOURNAL OF ORGANIC CHEMISTRY, 1980, 45 (04) :644-648
[20]   MECHANISMS OF GENERAL ACID AND BASE CATALYSIS OF REACTIONS OF WATER AND ALCOHOLS WITH FORMALDEHYDE [J].
FUNDERBURK, LH ;
ALDWIN, L ;
JENCKS, WP .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1978, 100 (17) :5444-5459