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Platinum complex compounds dimer

A derivative of cyclopentyne has been trapped in a matrix. Although cycloheptyne and cyclohexyne have not been isolated at room temperatures, Pt(0) complexes of these compounds have been prepared and are stable." The smallest cyclic allene" so far isolated is l-/err-butyl-l,2-cyclooctadiene 107." The parent 1,2-cyclooctadiene has not been isolated. It has been shown to exist transiently, but rapidly dimerizes." " The presence of the rert-butyl group apparently prevents this. The transient existence of 1,2-cycloheptadiene has also been shown," and both 1,2-cyclooctadiene and 1,2-cycloheptadiene have been isolated in platinum complexes." 1,2-Cyclohexadiene has been trapped at low temperatures, and its structure has been proved by spectral smdies." Cyclic allenes in general are less strained than their acetylenic isomers." The cyclic cumulene 1,2,3-cyclononatriene has also been synthesized and is reasonably stable in solution at room temperature in the absence of air." ... [Pg.187]

The sulfate bridged dimer K2[Pt2(S04)4(H20)2] was among the first platinum(III) compounds prepared and the analogous hydrogenphosphate bridged complexes [Pt2(HP04)4(L)2]2+ are... [Pg.723]

Binuclear platinum complexes with the o -pyridinato ligand can be formed with the metals in a divalent oxidation state. Two such complexes are the head-to-tail dimer [Pt(QH4NO)(NH3)2]2+ and the head-to-head tetramer [Pt2(CsH4NO)2(NH3)4]2+. This tetrame-ric platinum(II)-(II) compound is prepared under experimental conditions where the pH is kept around neutrality to avoid the formation of the partially oxidized complex.1120 Platinum-195 NMR spectroscopy can be used to show that the head-to-head to head-to-tail isomerization of these complexes involves dissociation of one ligand arm followed by an intramolecular linkage isomerization. Finally bond formation occurs between the divalent platinum with the vacant coordination site and the uncoordinated end of the ligand.1121... [Pg.434]

The activity of sulfur towards platinum complexes has led to investigation of so-called rescue agents to ameliorate the side effects of platinum therapy, without compromising its anti-tumor activity. These nucleophilic sulfur compounds include sodium thiosulfate (STS), sodium diethyldithio-carbamate (Naddtc), (S)- 2-[(3-aminopropyl)amino]ethyl phosphorothioic acid (WR-2721, Ethyol , amifostine), glutathione (GSH), methionine, thiourea, cysteine, -acetylcysteine, penicillamine, biotin, sulfathiazole, sodium 2-mercaptoethanesulfonate (mesna), and its dimer (di)mesna (BNP-7787). The protective effect of these compounds is either due to prevention, or reversal of Pt-S adducts in proteins. Some of the more promising of the above-mentioned compounds (see Fig. 1) will be discussed below. [Pg.344]

Minemoto S, Tanji H, Sakai H (2003) Polarizability anisotropies of rare gas van der Waals dimers studied by laser-induced molecular alignment. 1 Chem Phys 119 7737-7740 Yakshin MM (1948) On atomic polarization and bond refraction of complex compounds of platinum. Izvestia Sektora Platiny 21 146-156 (in Russian)... [Pg.534]

Supramolecular systems assembled by peripheral and axial coordination were also thoroughly described. For example, heteroarrays held by axial coordination, particularly of zinc, nickel, ruthenium, tin, silicon, etc. porphyrins and phthalo-cyanines to peripheral pyridyl and 4,4-bipyridyl groups were described. Another interesting class of compounds are porphyrin dimers prepared by coordinative assembly of cw- icso-(4-pyridyl)porphyrins with PdCla forming two [PtCl2(pyP)2] complexes, and more complex tesselated structures by substitution of the platinum complex chloro ligands by 2,3-diamine(azaporphyrins), as depicted in Fig. 12. [Pg.18]

Substantially more work has been done on reactions of square-planar nickel, palladium, and platinum alkyl and aryl complexes with isocyanides. A communication by Otsuka et al. (108) described the initial work in this area. These workers carried out oxidative addition reactions with Ni(CNBu )4 and with [Pd(CNBu )2] (. In a reaction of the latter compound with methyl iodide the complex, Pd(CNBu )2(CH3)I, stable as a solid but unstable in solution, was obtained. This complex when dissolved in toluene proceeds through an intermediate believed to be dimeric, which then reacts with an additional ligand L (CNBu or PPh3) to give PdL(CNBu )- C(CH3)=NBu I [Eq. (7)]. [Pg.31]

Me2CH, were obtained by iodine oxidation of dimeric platinum(II) complexes.419,420 The Pt—Pt bond lengths in the latter two compounds are 2.598(1) A and 2.578(1) A respectively,420 substantially longer than that in the acetate analogue. [Pg.725]

The products of electrochemical oxidation of conjugated dienes are considerably affected by the reaction conditions such as the material of the electrode, the supporting electrolyte and the solvent. The oxidation of butadiene with a graphite or carbon-cloth anode in 0.5 M methanolic solution of NaClCU mainly yields dimerized products along with small amounts of monomeric and trimeric compounds (equation 5)1. The use of platinum or glassy carbon mainly gives monomeric products. Other dienes such as isoprene, 1,3-cyclohexadiene, 2,4-hexadiene, 1,3-pentadiene and 2,3-dimethyl-l,3-butadiene yield complex mixtures of isomers of monomeric, dimeric and trimeric compounds, in which the dimeric products are the main products. [Pg.757]

The first organometallic compound of the transition metals to be characterized (1827) was Zeise s salt, K[(C2H4)PtCl3]-H20 (Fig. 18.1). It forms when K2[PtCl4] in aqueous ethanol is exposed to ethylene (ethene) a dimeric Pt—C2H4 complex with Cl bridges is also formed. In both species, the ethylene is bonded sideways to the platinum(II) center so that the two carbon atoms are equidistant from the metal. This is called the dihapto-or T]2 mode. A ligand such as an allyl radical with three adjacent carbons directly bonded to a metal atom would be trihapto- or t 3, and so on. [Pg.395]


See other pages where Platinum complex compounds dimer is mentioned: [Pg.176]    [Pg.31]    [Pg.235]    [Pg.283]    [Pg.422]    [Pg.1109]    [Pg.1109]    [Pg.436]    [Pg.483]    [Pg.442]    [Pg.245]    [Pg.956]    [Pg.74]    [Pg.1]    [Pg.430]    [Pg.1]    [Pg.5307]    [Pg.5309]    [Pg.5356]    [Pg.155]    [Pg.661]    [Pg.130]    [Pg.290]    [Pg.144]    [Pg.31]    [Pg.124]    [Pg.2]    [Pg.728]    [Pg.1053]    [Pg.81]    [Pg.202]    [Pg.385]    [Pg.379]    [Pg.387]    [Pg.392]    [Pg.422]    [Pg.241]    [Pg.178]    [Pg.155]   
See also in sourсe #XX -- [ Pg.6 , Pg.210 ]

See also in sourсe #XX -- [ Pg.6 , Pg.210 ]

See also in sourсe #XX -- [ Pg.6 , Pg.210 ]

See also in sourсe #XX -- [ Pg.6 , Pg.210 ]

See also in sourсe #XX -- [ Pg.6 , Pg.210 ]




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