SYNTHESIS AND ELECTROSPRAY MASS-SPECTROMETRY OF PLATINUM(II) COMPLEXES OF 5,5-DIETHYLBARBITURIC ACID (HDEBARB) - CRYSTAL-STRUCTURE OF CIS-[PTCL(DEBARB)(PPH(3))(2)]CENTER-DOT-CH2CL2
J. Fawcett et al., SYNTHESIS AND ELECTROSPRAY MASS-SPECTROMETRY OF PLATINUM(II) COMPLEXES OF 5,5-DIETHYLBARBITURIC ACID (HDEBARB) - CRYSTAL-STRUCTURE OF CIS-[PTCL(DEBARB)(PPH(3))(2)]CENTER-DOT-CH2CL2, Journal of the Chemical Society. Dalton transactions, (9), 1996, pp. 1897-1903
The reactions of 5,5-diethyibarbituric acid (Hdebarb; 1H,3H,5H-5,5-die
thylpyrimidine-2,4,6-trione), either as the monosodium salt or free ac
id in the presence of ancillary base (silver oxide or triethylamine),
with platinum(II) halide complexes-yielded mono(barbiturato) complexes
cis-[PtX(debarb)L(2)][X = Cl, By or I: L = PPh(3); L(2) = 1,2-bis(dip
henylphosphino)ethane (dppe) or 1,1'-bis(diphenylphosphino)ferrocene (
dippf)]. A single-crystal structure determination of cis-[PtCl(debarb)
(PPh(3))(2)]. CH2Cl2 showed that the plane of the N-bonded barbiturate
ligand is approximately perpendicular to the platinum co-ordination s
quare plane, rendering the two ethyl substituents inequivalent. Electr
ospray mass spectrometry has also been used to study these complexes,
with the major ions for cis-[PtX(debarb)L(2)] being [Pt(debarb)L(2)]() and [Pt(debarb)(NCM)L(2)](+), though molecular ions [M + H](+) are a
lso observed for all complexes. A number of cationic derivatives of th
e type [Pt(debarb)L(2)L'](+) (L = PPh(3) or L(2) = dppe; L' = pyridine
or PPh(3)) are also reported.