Physical organic chemistry of transition metal carbene complexes .7. Kinetics of hydrolysis of (CO)(5)M=C(OR)Ph (M=Cr, W; R=Me, Et) and (CO)(5)Cr=(OMe)CH=CHPh in aqueous acetonitrile

被引:43
作者
Bernasconi, CF
Flores, FX
Kittredge, KW
机构
[1] Dept. of Chemistry and Biochemistry, University of California, Santa Cruz
关键词
D O I
10.1021/ja963617i
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
A study of the hydrolysis of (CO)(5)Cr=C(OMe)Ph (1a), (CO)(5)Cr=C(OEt)Ph (1b), (CO)(5)Cr=C(OMe)CH=CHPh (1c), (CO)(5)W=C(OMe)Ph (1d), and (CO)(5)W=C(OEt)Ph (1e) in 50% MeCN-50% water (v/v) at 25 degrees C is reported. The reaction occurs in two stages; the first is the formation of (CO)(5)M=C(O-)R or (CO)(5)M=C(OH)R (M = Cr or W, R = Ph or CH=CHPh) while the second, much slower stage is the formation of RCH=O and (CO)(5)MOH(-). This paper reports a kinetic investigation of the first stage. It is shown that nucleophilic attack by OH- at high pH and by water at low pH, presumably to form a tetrahedral intermediate, is rate limiting; in the presence of buffers general base catalysis of water addition is observed. Kinetic solvent isotope effects of ca. 1 for the OH- and of 3 to 4.7 for the water pathways are also reported. The results lead to insights regarding the following points: (1) effect of changing the metal (Cr vs W), the alkoxy group (MeO vs EtO), and the R group (Ph vs CH=CHPh) on reactivity; (2) relative reactivity of Fischer carbene complexes vs carboxylic esters; (3) reasons why a tetrahedral intermediate is not detectable even though the equilibrium for its formation is probably favorable at high pH; and (4) reasons why the hydrolysis of Fischer carbene complexes containing an acidic proton such as (CO)(5)Cr=C(OMe)CH3 follow an entirely different mechanism.
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页码:2103 / 2110
页数:8
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共 52 条
[1]   KINETICS AND MECHANISM OF HYDRATION OF ALKYLKETENES [J].
ALLEN, AD ;
TIDWELL, TT .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1987, 109 (09) :2774-2780
[2]  
[Anonymous], ADV METAL ORGANIC CH
[3]   ORGANIC-SYNTHESIS WITH TRANSITION-METAL COMPLEXES .65. ALKEHYDES FROM HYDROLYSIS OF THE M=C BOND ALKOXYCARBENE CHROMIUM COMPLEXES WITH WATER-UROTROPINE - BINUCLEAR BRIDGED (BETA-AMINO)VINYLCARBENE CHROMIUM COMPLEX BY FRAGMENTATION OF UROPTROPINE [J].
AUMANN, R ;
HINTERDING, P ;
KRUGER, C ;
GODDARD, R .
JOURNAL OF ORGANOMETALLIC CHEMISTRY, 1993, 459 (1-2) :145-149
[5]   PHYSICAL ORGANIC-CHEMISTRY OF TRANSITION-METAL CARBENE COMPLEXES .4. KINETICS AND EQUILIBRIA OF METHOXIDE ION ADDITION TO [METHOXY(PHENYL)CARBENE]PENTACARBONYLCHROMIUM(0) AND [METHOXY(PHENYL)CARBENE]PENTACARBONYLTUNGSTEN(0) [J].
BERNASCONI, CF ;
FLORES, FX ;
GANDLER, JR ;
LEYES, AE .
ORGANOMETALLICS, 1994, 13 (06) :2186-2193
[6]   PHYSICAL ORGANIC-CHEMISTRY OF TRANSITION-METAL CARBENE COMPLEXES .1. THERMODYNAMIC AND KINETIC ACIDITIES OF (CO)5CR=C(OCH3)CH3 AND (CO)5CR=C(OCH3)CH2PH IN AQUEOUS ACETONITRILE .3. [J].
BERNASCONI, CF ;
SUN, WT .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1993, 115 (26) :12526-12532
[7]  
BERNASCONI CF, 1992, ADV PHYS ORG CHEM, V27, P119
[9]   MULTIPLE STRUCTURE-REACTIVITY RELATIONSHIPS IN ACID-CATALYZED BREAKDOWN OF MEISENHEIMER COMPLEXES [J].
BERNASCONI, CF ;
GANDLER, JR .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1978, 100 (26) :8117-8124
[10]   PHYSICAL ORGANIC-CHEMISTRY OF TRANSITION-METAL CARBENE COMPLEXES .5. KINETICS AND MECHANISM OF HYDROLYSIS OF (CO)(5)CR=C(OCH3)CH3 AND (CO)(5)CR=C(OCH2CH3)CH3 IN AQUEOUS ACETONITRILE [J].
BERNASCONI, CF ;
FLORES, FX ;
SUN, WT .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1995, 117 (17) :4875-4880