Bis(arylazo-oximato)palladium(II); synthesis, palladium–nitrogen bond lability, and redox activity
Abstract
The synthesis and characterisation of the title complex, [PdL2][L = PhN
NC(R)
NO], and related mixed-ligand complexes including [PdLA](A =ortho-metallated azobenzene) are described. The mass spectrum of [PdL2] reveals peaks corresponding to loss of oximato-O and NO from the parent ion. Gaseous HCl cleaves the Pd–N(oxime) bond selectively. Triphenylphosphine cleaves one or both Pd–N(azo) linkages giving [PdL2(PPh3)] and unstable [PdL2(PPh3)2] which is also produced by oxidative addition of HL to [Pd(PPh3)4]. In [PdL2(PPh3)] the unidentate and bidentate L groups scramble rapidly at 308 K but slowly at 233 K (1H n.m.r.). Bidentate phosphine and phosphinoarsine cleave the two Pd–N(azo) bonds simultaneously. Unidentate amines, when present in very large excess, produce unstable [PdL2(amine)] in which one L is unidentate. Addition of X2(X = Cl or Br) yields the unstable palladium (IV) complex [PdL2X2] which is readily reduced to halogeno-bridged palladium (II) species. A cyclic-voltammetric study of the one-electron quasi-reversible reduction of [PdL2], [PdL2(PPh3)], [PdLA]etc. at a platinum electrode is briefly reported.
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