MECHANISM OF A DIRECTLY OBSERVED BETA-HYDRIDE ELIMINATION PROCESS OF IRIDIUM ALKOXO COMPLEXES

被引:115
作者
BLUM, O [1 ]
MILSTEIN, D [1 ]
机构
[1] WEIZMANN INST SCI,DEPT ORGAN CHEM,IL-76100 REHOVOT,ISRAEL
关键词
D O I
10.1021/ja00121a016
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The octahedral alkoxo complexes mer-cis-HIr(OR)Cl(PR(3)')(3) (R = Me, Et, i-Pr; R' = Me, Et; H trans to Cl) decompose at room temperature in an alcohol/benzene solution, forming the dihydrido products mer-cis-H2IrCl(PR(3)')(3) and the corresponding aldehyde or ketone, The reaction rate is of first order in the iridium complex and of 1.33 order in the alcohol, which serves as a catalyst. The rate depends on the nature of the phosphine (PEt(3) > PMe(3)), on the alkyl substituent of the alkoxide (Me > Et much greater than i-Pr), and on the medium (benzene > N-methylpyrrolidone) but is not effected by excess phosphine. The activation parameters obtained for the decomposition of mer-cis-HIr(OCH3)Cl(PMe(3))(3) are Delta H-obs(double dagger) = 24.1 +/- 1.8 kcal mol(-1), Delta S-obs(double dagger) = 0.6 +/- 5.9 eu, and Delta G(obs)(double dagger) (298 K) = 23.9 +/- 3.6 kcal mol(-1). The kinetic isotope effect (combined primary and secondary effects) for the decomposition of mer-cis-DIr(OCD3)Cl(PMe(3))(3) at 22 degrees C is k(H)/k(D) = 2.45 +/- 0.10, and the secondary kinetic isotope effect for the decomposition of DIr(OCH3)Cl(PMe(3))(3) at 22 degrees C is 1.10 +/- 0.06. Both DIr(OCH3)Cl(PMe(3))(3) and HIr(OCD3)Cl(PMe(3))(3) produce only the two mer-cis isomers of HDIrCl(PMe(3))(3), but in different ratios. The following steps are involved in the beta-hydride elimination process: (a) pre-equilibrium generation of a free coordination site by chloride dissociation, which is induced by hydrogen bonding of a methanol molecule to the chloride; (b) irreversible rate-determining beta-C-H cleavage through the sterically favored transition state; (c) facile, irreversible dissociation of the aldehyde; (d) ligand rearrangement; and (e) irreversible reassociation of the chloride. Selective deuterium labeling enables the elucidation of a competing minor mechanism through the electronically favored transition state, operative for the trimethylphosphine complex only.
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页码:4582 / 4594
页数:13
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共 133 条
[1]  
AKL NS, 1985, J ORGANOMET CHEM, V297, P371
[2]   CHELATE-STABILIZED PRIMARY, SECONDARY, AND TERTIARY ALCOHOL AND ALKOXO PLATINUM(II) COMPLEXES - X-RAY CRYSTAL-STRUCTURE OF [PT(PH2PCH2CH2O)2].H2O [J].
ALCOCK, NW ;
PLATT, AWG ;
PRINGLE, PG .
JOURNAL OF THE CHEMICAL SOCIETY-DALTON TRANSACTIONS, 1989, (01) :139-143
[3]   PORPHYRINS .36. SYNTHESIS AND OPTICAL AND ELECTRONIC PROPERTIES OF SOME RUTHENIUM AND OSMIUM OCTAETHYLPORPHYRINS [J].
ANTIPAS, A ;
BUCHLER, JW ;
GOUTERMAN, M ;
SMITH, PD .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1978, 100 (10) :3015-3024
[4]   TRANS-INFLUENCE - ITS MEASUREMENT AND SIGNIFICANCE [J].
APPLETON, TG ;
CLARK, HC ;
MANZER, LE .
COORDINATION CHEMISTRY REVIEWS, 1973, 10 (3-4) :335-422
[5]   IRIDIUM(III) BETA-DIKETONATE HYDRIDES [J].
ARANEO, A .
JOURNAL OF INORGANIC & NUCLEAR CHEMISTRY, 1970, 32 (09) :2925-&
[6]   PREPARATION, SPECTROSCOPIC PROPERTIES, AND REACTIVITY OF TRANS-HYDRIDOARYL AND TRANS-HYDRIDOMETHYL COMPLEXES OF PLATINUM(II) [J].
ARNOLD, DP ;
BENNETT, MA .
INORGANIC CHEMISTRY, 1984, 23 (14) :2110-2116
[7]   CIS LABILIZATION OF LIGAND DISSOCIATION .3. SURVEY OF GROUP 6 AND 7 6-COORDINATE CARBONYL-COMPOUNDS - SITE PREFERENCE MODEL FOR LIGAND LABILIZATION EFFECTS [J].
ATWOOD, JD ;
BROWN, TL .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1976, 98 (11) :3160-3166
[8]   IRIDIUM-INITIATED AND RHODIUM-INITIATED C-C COUPLING OF CARBON-DIOXIDE WITH MALONODINITRILE [J].
BEHR, A ;
HERDTWECK, E ;
HERRMANN, WA ;
KEIM, W ;
KIPSHAGEN, W .
ORGANOMETALLICS, 1987, 6 (11) :2307-2313
[10]   DECOMPOSITION OF IRIDIUM ALKOXIDE COMPLEXES TRANS-MEOIR(CO)(PPH3)2 N-PROIR(CO)(PPH3)2, I-PROIR(CO)(PPH3)2 - EVIDENCE FOR BETA-ELIMINATION [J].
BERNARD, KA ;
REES, WM ;
ATWOOD, JD .
ORGANOMETALLICS, 1986, 5 (02) :390-391