Novel pyrimidine-bridged platinum(II) complexes: Multinuclear magnetic resonance spectroscopy and crystal structures of (NR4)(2)[(PtCl3)(2)(mu-pyrimidine)] and cis- and trans-{Pt(R2SO)Cl-2}(2)(mu-pyrimidine)

Citation
N. Nedelec et Fd. Rochon, Novel pyrimidine-bridged platinum(II) complexes: Multinuclear magnetic resonance spectroscopy and crystal structures of (NR4)(2)[(PtCl3)(2)(mu-pyrimidine)] and cis- and trans-{Pt(R2SO)Cl-2}(2)(mu-pyrimidine), INORG CHEM, 40(20), 2001, pp. 5236-5244
Citations number
42
Categorie Soggetti
Inorganic & Nuclear Chemistry
Journal title
INORGANIC CHEMISTRY
ISSN journal
00201669 → ACNP
Volume
40
Issue
20
Year of publication
2001
Pages
5236 - 5244
Database
ISI
SICI code
0020-1669(20010924)40:20<5236:NPPCMM>2.0.ZU;2-J
Abstract
Two new types of pyrimidine-bridged Pt(II) complexes, (NR4)(2)[(PtCl3)(2)(m u -pm)] and cis- and trans-{Pt(R2SO)Cl-2}(2)(mu -pm) where pm = pyrimidine, were synthesized and characterized by IR and multinuclear magnetic resonan ce spectroscopies and by crystallographic methods. Compounds with dimethyls ulfoxide, tetramethylenesulfoxide, di-n-propylsulfoxide (DPrSO), di-n-butyl sulfoxide (DBuSO), dibenzylsulfoxide (DBzSO), and diphenylsulfoxide were st udied. The aqueous reaction of K2PtCl4 with pyrimidine produced the [(PtCl3 )(2)(mu -pm)](2)-ions, which can be precipitated with a NR4+ salt. The aque ous reaction of K[Pt(R2SO)Cl-3] with pyrimidine in a 2:1 ratio produced the dinuclear species trans-{Pt(R2SO)Cl-2}(2)(mu -pm). With DBuSO and DBzSO, t he analogous cis isomers were also obtained. The Pt-195 NMR resonances of t he trans dimeric complexes were observed at higher field (av -3088 ppm) tha n the cis compounds (av -2948 ppm). The Pt-195 coupling constants with the atoms of pyrimidine (3)J(Pt-195-H-1) and (3)J(Pt-195-C-13) are larger in th e cis configuration than in the trans analogues. The crystal structures of two ionic complexes, (NR4)(2)[(PtCl3)(2)(mu -pm)] (R = Me and n-Bu), and of three mixed-ligands dimers, trans-{Pt(R2SO)Cl-2}2(mu -pm) (R2SO = DMSO, DP rSO) and cis-{Pt(DBuSO)Cl-2}(2)(mu -pm), were determined.