A room temperature direct metal insertion into a nonstrained carbon-carbon bond in solution. C-C vs C-H bond activation

被引:167
作者
Rybtchinski, B [1 ]
Vigalok, A [1 ]
BenDavid, Y [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/ja962253r
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The diphosphine 1,3-bis[(di-tert-butylphosphino)methyl]-2,4,6-trimethylbenzene (la) upon reacting with the rhodium and iridium olefin complexes M(2)(olefin)(4)Cl-2 (M = Rh, Ir) undergoes rapid, selective metal insertion into the strong unstrained aryl-methyl bond under very mild conditions (room temperature), yielding CIM(CH3)-[C6H(CH3)(2)(CH2P(t-Bu)(2))(2)] (M = Rh (4a), Ir (7a)). The carbon-carbon bond activation is competitive with a parallel C-H activation process, which results in formation of complexes ClMH(L)[CH2C6H(CH3)(2)(CH2P(t-Bu)(2))(2)] (M = Rh (3a), Ir (6a); L = cyclooctene inthe case of 6a and is absent in 3a). Complexes 3a and 6a undergo facile C-H reductive elimination (at room temperature (3a) or upon moderate heating (6a)), followed by C-C oxidative addition, resulting in clean formation of 4a and 7a, respectively. The C-C bond activation products are stable under the reaction conditions, demonstrating that this process is the thermodynamically favorable one. X-ray single-crystal analysis of 4a demonstrates that the rhodium atom is located in the center of a square pyramid, with the methyl group occupying the position trans to the vacant coordination site. Direct kinetic comparison of the C-C and C-H activation processes shows that-in contrast to theoretical calculations-metal insertion into the carbon-carbon bond in this system is not only thermodynamically but also kinetically preferred over the competing insertion into the carbon-hydrogen bond. When the Ligand 1,3-bis[(di-tert-butylphosphino)methyl]-2,4, (Ib), bearing the strong electron-donating methoxy group in the position trans to the Ar-CH3 bond to be cleaved, was used instead of la, no effect on the reaction rate or on the ratio between the C-H and C-C activation products was observed. Our observations indicate that the C-C oxidative addition proceeds via a three-centered mechanism involving a nonpolar transition state, similar to the one proposed for C-H activation of hydrocarbons. An eta(2)-arene complex is not involved in the C-C activation process.
引用
收藏
页码:12406 / 12415
页数:10
相关论文
共 60 条
[11]   MU-DICHLOROTETRAETHYLENEDIRHODIUM(I) [J].
CRAMER, R .
INORGANIC CHEMISTRY, 1962, 1 (03) :722-&
[12]   CLEAVAGE OF UNSTRAINED CC SINGLE BONDS IN TRICARBONYLIRON COMPLEXES OF 5,5-DIALKYL-SUBSTITUTED CYCLOPENTADIENES [J].
EILBRACHT, P ;
DAHLER, P .
CHEMISCHE BERICHTE-RECUEIL, 1980, 113 (02) :542-554
[13]  
Frost A.A., 1961, Kinetics and Mechanism
[14]  
FRYZUK MD, 1991, J AM CHEM SOC, V113, P8724, DOI 10.1021/ja00023a020
[15]   SYNTHESIS, STRUCTURE AND HYDROGENATION OF ETA-3-BENZYL DIPHOSPHINE COMPLEXES OF RHODIUM AND IRIDIUM [J].
FRYZUK, MD ;
MCCONVILLE, DH ;
RETTIG, SJ .
JOURNAL OF ORGANOMETALLIC CHEMISTRY, 1993, 445 (1-2) :245-256
[16]   RHODIUM AND IRIDIUM AMIDES [J].
FRYZUK, MD ;
MACNEIL, PA ;
RETTIG, SJ .
ORGANOMETALLICS, 1986, 5 (12) :2469-2476
[17]   TRANSFER OF METHYLENE GROUPS PROMOTED BY METAL COMPLEXATION [J].
GOZIN, M ;
AIZENBERG, M ;
LIOU, SY ;
WEISMAN, A ;
BENDAVID, Y ;
MILSTEIN, D .
NATURE, 1994, 370 (6484) :42-44
[18]   ACTIVATION OF A CARBON-CARBON BOND IN SOLUTION BY TRANSITION-METAL INSERTION [J].
GOZIN, M ;
WEISMAN, A ;
BENDAVID, Y ;
MILSTEIN, D .
NATURE, 1993, 364 (6439) :699-701
[19]   SYNTHESIS OF A HIGHLY REACTIVE (BENZYNE)RUTHENIUM COMPLEX - C-C, C-H, N-H, AND O-H ACTIVATION REACTIONS [J].
HARTWIG, JF ;
ANDERSEN, RA ;
BERGMAN, RG .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1989, 111 (07) :2717-2719
[20]   ACTIVATION OF A FLUORINATED CARBON CARBON BOND BY OXIDATIVE ADDITION OF TETRAFLUOROCYCLOPROPENE TO PLATINUM(0) - THE 1ST EXAMPLE OF A PERFLUOROMETALLACYCLOBUTENE [J].
HEMOND, RC ;
HUGHES, RP ;
ROBINSON, DJ ;
RHEINGOLD, AL .
ORGANOMETALLICS, 1988, 7 (10) :2239-2241