Steric and electronic effects on the reactivity of Rh and Ir complexes containing P-S, P-P, and P-O ligands. Implications for the effects of chelate ligands in catalysis

被引:103
作者
Gonsalvi, L
Adams, H
Sunley, GJ
Ditzel, E
Haynes, A [1 ]
机构
[1] Univ Sheffield, Dept Chem, Sheffield S3 7HF, S Yorkshire, England
[2] BP Chem Ltd, Hull Res & Technol Ctr, Kingston Upon Hull HU12 8DS, N Humberside, England
关键词
D O I
10.1021/ja0176191
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Kinetic studies of the reactions of [M(CO)(L-L)I] [M = Rh, Ir; L-L = Ph2PCH2P(S)Ph-2 (dppms), Ph2PCH2CH2PPh2 (dppe), and Ph2PCH2P(O)Ph-2 (dppmo)] with methyl iodide have been undertaken. All the chelate ligands promote oxidative addition of methyl iodide to the square planar M(I) centers, by factors of between 30 and 50 compared to the respective [M(CO)(2)l(2)](-) complexes, due to their good donor properties. Migratory CO insertion in [Rh(CO)(L-L)I2Me] leads to acetyl complexes [Rh(L-L)I-2(COMe)] for which X-ray crystal structures were obtained for L-L = dppms (3a) and dppe (3b). Against the expectations of simple bonding arguments, methyl migration is faster by a factor of ca. 1500 for [Rh(CO)(dppms)I2Me] (2a) than for [Rh(CO)(dppe)I2Me] (2b). For M = Ir, alkyl iodide oxidative addition gives stable alkyl complexes [Ir(CO)(L-L)I2R]. Migratory insertion (induced at high temperature by CO pressure) was faster for [Ir(CO)(dppms)I2Me] (5a) than for its dppe analogue (5b). Reaction of methyl triflate with [Ir(CO)(dppms)l] (4a) yielded the dimer [{Ir(CO)(dppms)(mu-I)Me}(2)](2+) (7), which was characterized crystallographically along with Sa and Ir(CO)(dppms)I2Et] (6). Analysis of the X-ray crystal structures showed that the dppms ligand adopts a conformation which creates a sterically crowded pocket around the alkyl ligands of 5a, 6, and 7. It is proposed that this steric strain can be relieved by migratory insertion, to give a five-coordinate acetyl product in which the sterically crowded quadrants flank a vacant coordination site, exemplified by the crystal structure of 3a. Conformational analysis indicates similarity between M(dppms) and m(2)(mu-dppm) chelate structures, which have less flexibility than M(dppe) systems and therefore generate greater steric strain with the "axial" ligands in octahedral complexes. Ab initio calculations suggest an additional electronic contribution to the migratory insertion barrier, whereby a sulfur atom trans to CO stabilizes the transition state compared to systems with phosphorus trans to CO. The results represent a rare example of the quantification of ligand effects on individual steps from catalytic cycles, and are discussed in the context of catalytic methanol carbonylation. Implications for other catalytic reactions utilizing chelating diphosphines (e.g., CO/alkene copolymerization and alkene hydroformylation) are considered.
引用
收藏
页码:13597 / 13612
页数:16
相关论文
共 88 条
[1]   AN INVESTIGATION OF THE REACTION OF [RH2(COME)2(CO)2I6]2- WITH SOME TERTIARY PHOSPHINES, AND PPH(OME)2, AND THE X-RAY STRUCTURE OF [RH(COME)I2(PH2PCH2PPH2)] [J].
ADAMS, H ;
BAILEY, NA ;
MANN, BE ;
MANUEL, CP .
INORGANICA CHIMICA ACTA, 1992, 198 :111-118
[2]   Cationic complexes of iridium: Diiodobenzene chelation, electrophilic behavior with olefins, and fluxionality of an Ir(I) ethylene complex [J].
Albietz, PJ ;
Cleary, BP ;
Paw, W ;
Eisenberg, R .
INORGANIC CHEMISTRY, 2002, 41 (08) :2095-2108
[3]   Complexes [(P-2)Rh(hfacac)] as model compounds for the fragment [(P-2)Rh] and as highly active catalysts for CO2 hydrogenation: The accessible molecular surface (AMS) model as an approach to quantifying the intrinsic steric properties of chelating ligands in homogeneous catalysis [J].
Angermund, K ;
Baumann, W ;
Dinjus, E ;
Fornika, R ;
Gorls, H ;
Kessler, M ;
Kruger, C ;
Leitner, W ;
Lutz, F .
CHEMISTRY-A EUROPEAN JOURNAL, 1997, 3 (05) :755-764
[4]  
[Anonymous], SHELXL 97 INTEGRATED
[5]  
ATWOOD JD, 1995, COMPREHENSIVE ORGANO, V8, P303, DOI DOI 10.1016/B978-008046519-7.00074-5
[6]   CIS-[RHI(CO)(PH(2)PCH(2)P(S)PH(2))] - A NEW CATALYST FOR METHANOL CARBONYLATION [J].
BAKER, MJ ;
GILES, MF ;
ORPEN, AG ;
TAYLOR, MJ ;
WATT, RJ .
JOURNAL OF THE CHEMICAL SOCIETY-CHEMICAL COMMUNICATIONS, 1995, (02) :197-198
[7]  
BAKER MJ, 1995, Patent No. 632006
[8]   BROMIDE CATALYSIS IN THE OXIDATIVE ADDITION OF IODOMETHANE TO IRIDIUM(I) COMPLEXES [J].
BASSON, SS ;
LEIPOLDT, JG ;
PURCELL, W ;
SCHOEMAN, JB .
INORGANICA CHIMICA ACTA, 1990, 173 (02) :155-158
[9]   Carbonylation reaction of alkyl complexes of iron and molecular structure of cis,trans-[Fe(CO)(2)(PME3)(2)(CH3)I] and trans,trans-[Fe(CO)(2)(PMe3)(2)(CH3)I] [J].
Bellachioma, G ;
Cardaci, G ;
Macchioni, A ;
Reichenbach, G ;
Foresti, E ;
Sabatino, P .
JOURNAL OF ORGANOMETALLIC CHEMISTRY, 1997, 531 (1-2) :227-235
[10]   Copolymerization of carbon monoxide with ethene catalyzed by bis-chelated palladium(II) complexes containing diphosphine and dinitrogen ligands [J].
Bianchini, C ;
Lee, HM ;
Barbaro, P ;
Meli, A ;
Moneti, S ;
Vizza, F .
NEW JOURNAL OF CHEMISTRY, 1999, 23 (09) :929-938