A chromium-diphosphine system for catalytic ethylene trimerization:: Synthetic and structural studies of chromium complexes with a nitrogen-bridged diphosphine ligand with ortho-methoxyaryl substituents

被引:90
作者
Agapie, Theodor [1 ]
Day, Michael W. [1 ]
Henling, Lawrence M. [1 ]
Labinger, Jay A. [1 ]
Bercaw, John E. [1 ]
机构
[1] CALTECH, Arnold & Mabel Beckman Labs Chem Synth, Pasadena, CA 91125 USA
关键词
D O I
10.1021/om050605+
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
To gain molecular-level insight into the important features of a chromium-diphosphine catalytic system for ethylene trimerization, the coordination chemistry of chromium with "PNP" ligands (PNPOMe) (o-MeOC6H4)(2)PN(CH3)P(o-MeOC6H4)(2), (Pt-BuNi-amylPOMe) = (2-MeO-4-t-BuC6H3)(2)PN(i-amyl)P(2-MeO-4-t-BuC6H3)(2)) has been explored. Chromium(0) carbonyl complexes have been synthesized by CO displacement with diphosphine. Oxidation of Cr(CO)(4) {kappa(2)-(P,P)-(PNPOMe)} with I-2, Br-2, and PhICl2 generates the corresponding chromium(III) halide complexes. Chromium(III) complexes CrCl3 {(kappa(3)-(P,P,O)-(PNPOMe)}, CrCl3{kappa(3)-(P,P,O)-((Pt-BuNi-amylPOMe))}, and CrCl2(CH3){kappa(3)-(P,P,O)-(PNPOMe)} can be synthesized by metalation with CrCl3(THF)(3) or CrCl2(CH3)(THF)(3). Reaction of CrCl3{kappa(3)-(P,P,O)-(PNPOMe)} with o,o'-biphenyldiyl diGrignard affords CrBr(o,o'-biphenyldiyl){kappa(3)-(P,P,O)-(PNPOMe)}. Single-crystal X-ray diffraction studies show that the Cr-O and Cr-P distances can vary significantly as a function of metal oxidation state and the other ligands bound to chromium. Variable- temperature H-2 NMR spectroscopy studies of chromium(III) complexes supported by PNP ligands indicate fluxional behavior with the ether groups interchanging at higher temperatures. Low-temperature H-2 NMR spectra are consistent with solution structures similar to the ones determined in the solid state.
引用
收藏
页码:2733 / 2742
页数:10
相关论文
共 43 条
[1]   Mechanistic studies of the ethylene trimerization reaction with chromium-diphosphine catalysts: Experimental evidence for a mechanism involving metallacyclic intermediates [J].
Agapie, T ;
Schofer, SJ ;
Labinger, JA ;
Bercaw, JE .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2004, 126 (05) :1304-1305
[2]   New tantalum-based catalyst system for the selective trimerization of ethene to 1-hexene [J].
Andes, C ;
Harkins, SB ;
Murtuza, S ;
Oyler, K ;
Sen, A .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2001, 123 (30) :7423-7424
[3]   SYNTHESIS AND CRYSTAL-STRUCTURE OF [CRCL3(DMPE)]2 (MU-DMPE).2(CH2CL2) - A DIPHOSPHINE LIGAND BRIDGING 2 ISOLATED CR(III) CENTERS [J].
ARIF, AM ;
JONES, RA ;
HEFNER, JG .
JOURNAL OF CRYSTALLOGRAPHIC AND SPECTROSCOPIC RESEARCH, 1986, 16 (05) :673-679
[4]   CRYSTAL AND MOLECULAR STRUCTURE OF [1,2-BIS-(DIPHENYLPHOSPHINO)ETHANE]-TETRACARBONYLCHROMIUM [J].
BENNETT, MJ ;
COTTON, FA ;
LAPRADE, MD .
ACTA CRYSTALLOGRAPHICA SECTION B-STRUCTURAL CRYSTALLOGRAPHY AND CRYSTAL CHEMISTRY, 1971, B 27 (OCT15) :1899-&
[5]   Highly selective chromium-based ethylene trimerisation catalysts with bulky diphosphinoamine ligands [J].
Blann, K ;
Bollmann, A ;
Dixon, JT ;
Hess, FM ;
Killian, E ;
Maumela, H ;
Morgan, DH ;
Neveling, A ;
Otto, S ;
Overett, MJ .
CHEMICAL COMMUNICATIONS, 2005, (05) :620-621
[6]   Mechanism of ethene trimerization at an ansa-(arene)(cyclopentadienyl) titanium fragment [J].
Blok, ANJ ;
Budzelaar, PHM ;
Gal, AW .
ORGANOMETALLICS, 2003, 22 (13) :2564-2570
[7]   Ethylene tetramerization: A new route to produce 1-octene in exceptionally high selectivities [J].
Bollmann, A ;
Blann, K ;
Dixon, JT ;
Hess, FM ;
Killian, E ;
Maumela, H ;
McGuinness, DS ;
Morgan, DH ;
Neveling, A ;
Otto, S ;
Overett, M ;
Slawin, AMZ ;
Wasserscheid, P ;
Kuhlmann, S .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2004, 126 (45) :14712-14713
[9]   High activity ethylene trimerisation catalysts based on diphosphine ligands [J].
Carter, A ;
Cohen, SA ;
Cooley, NA ;
Murphy, A ;
Scutt, J ;
Wass, DF .
CHEMICAL COMMUNICATIONS, 2002, (08) :858-859
[10]   Nickel ethylene polymerization catalysts based on phosphorus ligands [J].
Cooley, NA ;
Green, SM ;
Wass, DF ;
Heslop, K ;
Orpen, AG ;
Pringle, PG .
ORGANOMETALLICS, 2001, 20 (23) :4769-4771