Issue 12, 1983

Amidino-complexes of rhenium. Bidentate NN′- and ortho-metallated derivatives

Abstract

[Re(CO)4{R′NC(R)NR′}] complexes (I; R = Me or Ph; R′= Ph or C6H4Me-p), containing delocalised bidentate NN′-chelated amidino-groups, have been prepared by reactions of (i)[{Re(CO)4X}2](X = Cl or Br) with R′N(Li)C(R)NR′, (ii)[Re(CO)4{R′NC(R)NHR′}X] with LiBun, (iii)[Re2(CO)10] with R′NHC(R)NR′, and (iv) by decarbonylation of [Re(CO)4{CON(R′)C(R)NR′}] complexes. Triphenylphosphine displaces CO from (I) to form [Re(CO)3(PPh3){R′NC(R)NR′}](II), which are more conveniently prepared by the reactions of [Re(CO)4L′Br](L′= PPh3 or AsPh3) with amidines in refluxing toluene. This reaction stops at the intermediate compound [Re(CO)3(PPh3){R′NC(R)N(Me)R′}Br] when a NNN′-trisubstituted amidine is used. Related complexes [Re(CO)3(PPh3){R′NC(R)NHR′}Br] are formed when (II) are treated with hydrobromic acid. [Re(CO)5X](X = Cl or Br) and [{Re(CO)4Br}2] react with amidines to form o-metallated [[graphic omitted]H3R″-p}{R′NC(R)NHR′}](R = H, R′= Ph; R″= H; R = Me or Ph, R′= C6H4Me-p, R″= Me; R = Me or Ph, R′= Ph, R″= H) complexes which contain a six-membered o-metallated ring. Benzamidines (R = Ph) produce in addition an isomeric complex in which o-metallation of the R substituent occurs to give complexes having five-membered o-metallated rings. Intermediate [Re(CO)3{R′NC(R)NHR′}2X] complexes were isolated for R′= C6H4Me-p, R = Me, and X = Cl or Br. A 1,3-proton-shift mechanism for the o-metallation reaction is eliminated by the formation of the complex [[graphic omitted]C6H3Me-p}{R′NC(Me)N(Me)R′}](R′= C6H4Me-p) from R′N(Me)C(Me)NR′. Reaction schemes are suggested for the course of the reactions, and structures for the new complexes are proposed on the basis of spectroscopic data.

Article information

Article type
Paper

J. Chem. Soc., Dalton Trans., 1983, 2613-2624

Amidino-complexes of rhenium. Bidentate NN′- and ortho-metallated derivatives

J. A. Clark and M. Kilner, J. Chem. Soc., Dalton Trans., 1983, 2613 DOI: 10.1039/DT9830002613

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