TRANSITION-METAL COMPLEXATION BY CALIX[4] ARENE-DERIVED PHOSPHINITES

Citation
C. Loeber et al., TRANSITION-METAL COMPLEXATION BY CALIX[4] ARENE-DERIVED PHOSPHINITES, Journal of the Chemical Society. Dalton transactions, (4), 1996, pp. 513-524
Citations number
38
Categorie Soggetti
Chemistry Inorganic & Nuclear
ISSN journal
03009246
Issue
4
Year of publication
1996
Pages
513 - 524
Database
ISI
SICI code
0300-9246(1996):4<513:TCBCAP>2.0.ZU;2-1
Abstract
A series of utyl-25,27-bis(diphenylphosphinooxy)calix[4]arenes [alkoxy = OH L(10), OMe L(11), OEt L(12),OPr(n)L(13), OCH(2)CO(2)MeL(14), OCH (2)CO(2)EtL(15) or (-)-OCH(2)CO(2)C(10)H(19)L(16)(C10H19 = menthyl = 2 -isopropyl-5-methylcyclohexyl)] and -bis(diphenylphosphinooxy)-26-etho xycalix[4]arenes [alkoxy = OCH(2)CO(2)Et L(17) or (-)-OCH2CO2C10H19 L( 18)] have been prepared selectively as cone conformers b; treating the corresponding 25,27-dihydroxycalix[4] arene precursor with LiNPr2i or LiBu at temperatures below -50 degrees C, followed by reaction with P Ph(2)Cl. All compounds exist in solution in a stable cone conformation , except L(11) for which a fast exchange between the cone conformer an d a partial-cone isomer occurs. Phosphination of thoxycarbonylmethoxy) -26,28-dihydroxycalix[4]arene L(6) using NEt(3) instead of LiNP2i, gav e 5,11,17,23-tetra-tert-butyl-25-diphenylphos 27-hydroxycalix[4]arene L(19). When the reaction leading to L(10) was performed in refluxing t etrahydrofuran (thf), the 1,2-alternate conformer L(21) was formed in addition to L(10). As shown by a variable-temperature NMR study, L(21) undergoes fast homomerization in solution. Reaction of [MCl(2)(PhCN)( 2)] (M = Pt or Pd) with 2 equivalents of monophosphinite L(19) gave se lectively the corresponding trans-[MCl(2)L(2)(19)] complexes (M = Pt o r Pd). For the diphosphinites, it was found that their complexation pr operties depend on both the calixarene substituents and the nature of the starting complex. Thus, reaction of the C-2 symmetrical diphosphin ites L(12), L(15) and L(16) with [PtCl2(PhCN)(2)] gave cyclooligomeric complexes of formula [{trans-PtCl2(diphosphinite)}(4)] in which the d iphosphinites behave as bridging ligands between two metal centres. Re action of L(15) with [PdCl2(PhCN)(2)] gave [(trans-PdCl(2)L(17))(2)]. When the unsymmetrically substituted diphosphinite L(17) was treated w ith [PtCl2(PhCN)(2)], the dimer [(trans-PtCl(2)L(17))(2)] was formed. Diphosphinite L(18) and [PdCl2(PhCN)(2)] gave [(trans-PdCl(2)L(18))(2) ]. Chelating behaviour was found for the chiral diphosphinite L(16) in [Rh(cod)L(16)]BF4 (cod = cycloocta-1,5-diene) obtained by reaction of [{RhCl(cod)}(2)]with 2 equivalents of AgBF4 and 2 equivalents of L(16 ) in thf.