Reversible polymerization and cis-trans isomerization equilibria in [PdCl2{Ph2P(CH2CH2O)4CH2CH2PPh2-P,P′}] metallacrown ethers

被引:38
作者
Smith, DC [1 ]
Gray, GM [1 ]
机构
[1] Univ Alabama, Dept Chem, CHEM201 UAB Stn, Birmingham, AL 35294 USA
关键词
D O I
10.1021/ic971249t
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
The first study of metallacrown ethers with kinetically labile metal centers is reported. The reaction of Ph2P(CH2CH2O)(4)CH2CH2PPh2 with PdCl2 in an acetonitrile-dichloromethane solution yields an equilibrium mixture of cyclic n-mers and monomers with the empirical formula [PdCl2,{Ph2P(CH2CH2O)(4)CH2CH2PPh2-P,P'}]. Both cis and trans coordination geometries are observed for the palladium(II) in these complexes, with the trans being the more abundant. The solution equilibria in both chloroform-d and acetonitrile-d(3) were studied using P-31{H-1}, C-13{H-1}, and H-1 NMR spectroscopy. A model has been developed relating the product distributions at various concentrations, obtained from integration of quantitative P-31{H-1} NMR spectra, to a cis-trans equilibrium constant and equilibrium constants for the dimerization and n-merization reactions of the trans monomer. The concentration and temperature dependence of the equilibrium constants obtained from this model are consistent with the thermodynamics of cis-trans isomerization and reversible step polymerization. One surprising result from this study is that the dimerization equilibrium constant is nearly an order of magnitude smaller than the n-merization equilibrium constant.
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页码:1791 / 1797
页数:7
相关论文
共 56 条
[11]  
Dehmlow E. V., 1993, Phase Transfer Catalysis
[12]  
EMPSALL HD, 1979, J CHEM SOC DA, P1972
[13]   METALLACROWN ETHERS - UNIQUE ORGANOMETALLIC LIGANDS [J].
GRAY, GM .
COMMENTS ON INORGANIC CHEMISTRY, 1995, 17 (02) :95-114
[14]   [CIS,CIS,TRANS-RUCL2(CO)(2)(PH(2)P(CH2CH2O)(N)CH(2)CH(2)PPH(2)-P,P')](M) (N=4, 5, M=1,2,...) METALLACROWN X-RAY CRYSTAL-STRUCTURES OF CIS,CIS,TRANS-RUCL2(CO)(2)(PH(2)P(CH2CH2O)(4)CH(2)CH(2)PPH(2)-P,P'), A COMPLEX WHICH EXHIBITS ROTATIONAL ISOMERS IN THE SOLID-STATE AND [CIS,CIS,TRANS-RUCL2(CO)(2)-(MU-PH(2)P(CH2CH2O)(4)CH(2)CH(2)PPH(2)-P,P')](2), AN UNUSUAL DIMETALLACROWN ETHER [J].
GRAY, GM ;
VARSHNEY, A ;
DUFFEY, CH .
ORGANOMETALLICS, 1995, 14 (01) :238-244
[15]   SIZE-SELECTIVE REACTIONS OF CIS-MO(CO)(4)(PH(2)P(CH2CH2O)(N)CH(2)CH(2)PPH(2)-P,P') (N=4,5) METALLACROWN ETHERS WITH MERCURY(II) SALTS - CRYSTAL-STRUCTURE OF CIS-MO(CO)(4)(MU-PH(2)P(CH2CH2O)(5)CH(2)CH(2)PPH(2)-P,P',O,O'',O''',O'''')CENTER-DOT-HGCL2, AN UNUSUAL BIMETALLIC COMPLEX XONTAINING A MOLECULAR CLEFT [J].
GRAY, GM ;
DUFFEY, CH .
ORGANOMETALLICS, 1995, 14 (01) :245-250
[16]   An NMR spectroscopic study of the binding of alkali metal cations and methanol by cis-Mo(CO)(4){Ph(2)P(CH2CH2O)(n)CH2CH2PPH2-P,P'} (n=4,5) metallacrown ethers. The X-ray crystal structures of cis-Mo(CO)(4){Ph(2)P(CH2CH2O)(4)CH(2)CH(2)PPh(2)-P,P'}center dot MeOH and cis-Mo(CO)(4){Ph(2)P(CH2CH2)(4)CH(2)CH(2)PPh(2)-P,P'}center dot H2O [J].
Gray, GM ;
Fish, FP ;
Duffey, CH .
INORGANICA CHIMICA ACTA, 1996, 246 (1-2) :229-240
[17]   THE FIRST ISOLABLE ORGANOPALLADIUM FORMATO COMPLEXES - SYNTHESIS, CHARACTERIZATION, AND X-RAY STRUCTURE - FACILE AND CONVENIENT THERMAL GENERATION OF COORDINATIVELY UNSATURATED PALLADIUM(0) SPECIES [J].
GRUSHIN, VV ;
BENSIMON, C ;
ALPER, H .
ORGANOMETALLICS, 1995, 14 (07) :3259-3263
[18]  
Harris R. K., 1986, NUCL MAGNETIC RESONA, P85
[19]   CIS AND TRANS PALLADIUM(II) AND PLATINUM(II) COMPLEXES WITH 1,8-BIS(DIPHENYLPHOSPHINO)-3,6-DIOXAOCTANE AND THEIR STRUCTURAL CHARACTERIZATION - THE 1ST EXAMPLE OF AN 11-MEMBERED DIPHOSPHINE CHELATE INVOLVING CIS GEOMETRY [J].
HILL, WE ;
TAYLOR, JG ;
FALSHAW, CP ;
KING, TJ ;
BEAGLEY, B ;
TONGE, DM ;
PRITCHARD, RG ;
MCAULIFFE, CA .
JOURNAL OF THE CHEMICAL SOCIETY-DALTON TRANSACTIONS, 1986, (11) :2289-2295
[20]   FACTORS INFLUENCING THE FORMATION OF CIS AND TRANS ISOMERS IN LONG-CHAIN BIS(PHOSPHINE) COMPLEXES OF PLATINUM(II) [J].
HILL, WE ;
MINAHAN, DMA ;
TAYLOR, JG ;
MCAULIFFE, CA .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1982, 104 (22) :6001-6005