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Palladium compounds Pd

The palladium compound [Pd(CNcy)2]3 has been made by metal vapour synthesis, from Pd atoms and a solution of cyNC at 160 K. It has an analogous structure [Pd3(CNcy)3( 2-CNcy)3] [60]. [Pg.197]

In addition to the head-to-head cross-coupling reactions, it has been discovered that the reaction of phenyl or 1-alkenyl iodides with (E)-l-alkenyl-l,3,2-benzo-dioxaboroles produces the head-to-tail cross-coupling products, 2-phenyl-1-alkenes or 2-alkyl-1,3-alkadienes, respectively (Eq. 107) The reaction is profoundly affected by catalytic quantities of palladium compounds (Pd black prepared by reduction of Pd(OAc)j with diborane is especially effective) in the presence of tri-ethylamine. [Pg.104]

The palladium compound [Pd (C5H5)2 ] is very unstable. Palladium and platinum, like other metals of the second and third series of the transition metals, do not show tendencies toward the formation of stable metallocenes, in contrast to the M metals. [Pg.550]

Transition metals such as Mn, Fe, Ru, Co, Rh, Ni and their metal compounds easily react with carbon monoxide to afford their metal carbonyl compounds (M ,(CO) ). But no correspond palladium compound (Pd (CO) ) is isolated. However, if the palladium is coordinated by an electron-donating compound such as phosphine and SO3F, the palladium atom is able to form stable compounds with carbon monoxide [36-49]. For example, palladium carbonyl compounds are prepared by the reaction of palladium phosphine with carbon monoxide or by the reaction of palladium compounds with phosphine in the presence of carbon monoxide as shown in eqs. (20.18) and (20.19) [39]. [Pg.440]

Polymerization by G—G Goupling. An aromatic carbon—carbon coupling reaction has been employed for the synthesis of rigid rod-like polyimides from imide-containing dibromo compounds and aromatic diboronic acids ia the presence of palladium catalyst, Pd[P(CgH )2]4 (79,80). [Pg.403]

Co-condensation reaction of the vapors of l,3-di-rcrt-butylimidazol-2-ylidene and nickel, palladium, or platinum gives the coordinatively unsaturated 14-electron sandwiches [L M] (M=Ni, Pd, Pt) of the carbene type (990M3228). Palladium(O) carbene complexes can also be prepared by the direct interaction of l,3-R2-imidazol-2-ylidenes (R=/-Pr, r-Bu, Cy, Mes) (L) with the palladium(O) compound [Pd(P(o-Tol)3)2] (OOJOM(595)186), and the product at the first stage is [(L)PdP(o-Tol)3l, and then in excess free carbene [PdL ]. [Pg.136]

PdF2 is that rare substance, a paramagnetic palladium compound, explicable in terms of (distorted) octahedral coordination of palladium with octahedra sharing corners [15], It exists in two forms, both having /zeff 2.0 /xB, rather below the spin only value for two unpaired electrons. Bond lengths are Pd-F 2.172 A (two) and 2.143 A (four) in the tetragonal form (rutile structure). [Pg.175]

Electrochemical reduction of ci 5,-PtCl2(PR3)2 (R = Ph, Et) generates very reactive Pt(PR3)2 species [51] (though it has been suggested that corresponding palladium compounds may be anionic, e.g. Pd(PR3)2Cl2 )... [Pg.191]

The palladium and platinum metals also form carbonyl compounds. Of the expected compounds Pd(CO)4, Pt(CO)4, Ru(CO)5, Os (CO) 5, Mo-(CO)e, and W(CO)6 only Mo(CO)e has been prepared, although some unsaturated ruthenium carbonyls have been prepared. The compounds Pd(CO)2Cl2, Pt(CO)2Cl2, K[PtCOCl3], etc., show the stability of the four dsp2 bonds. It would be interesting to determine whether or not each CO is bonded to two metal atoms in compounds such as [Pt(CO)Cl2]2, whose structure is predicted to be... [Pg.97]

When the Pd bears chiral ligands, these reactions can be enantioselective. TT-Allylmolybdenum compounds behave similarly.Because palladium compounds are expensive, a catalytic synthesis, which uses much smaller amounts of the complex, was developed. That is, a substrate such as an allylic acetate, carbo-... [Pg.551]

The compound [Pd[/i2-(C6H4)PPh2]Brj 4 has [(C6II4)PPh2] anions bridging two palladium atoms in a tetranuclear structure. This tetranuclear frame was cleaved with phosphines to form mononuclear compounds.568 Intermediate products of the frame degradation were detected (see Figure 50).567... [Pg.605]

Asymmetric synthesis of tricyclic nitro ergoline synthon (up to 70% ee) is accomplished by intramolecular cyclization of nitro compound Pd(0)-catalyzed complexes with classical C2 symmetry diphosphanes.94 Palladium complexes of 4,5-dihydrooxazoles are better chiral ligands to promote asymmetric allylic alkylation than classical catalysts. For example, allylic substitution with nitromethane gives enantioselectivity exceeding 99% ee (Eq. 5.62).95 Phosphi-noxazolines can induce very high enatioselectivity in other transition metal-catalyzed reactions.96 Diastereo- and enantioselective allylation of substituted nitroalkanes has also been reported.9513... [Pg.146]

A similar involvement of palladium hydride, palladium alkyl, and palladium acyl complexes as intermediates in the catalytic cycle of the Pd-catalyzed hydroxycarbonylation of alkenes was reported for the aqueous-phase analogs. The cationic hydride PdH(TPPTS)3]+ was formed via the reduction of the Pd11 complex with CO and H20 to [Pd(TPPTS)3] and subsequent protonation in the acidic medium. The reaction of the hydride complex with ethene produced two new compounds, [Pd(Et)(TPPTS)3]+ and Pd(Et)(solvent)(TPPTS)2]+. The sample containing the mixture of palladium alkyl complexes reacted readily with CO to afford trans-[Pd(C(Q)Et)(TPPTS)2]+.665... [Pg.191]

Reaction of organic halides with alkenes catalyzed by palladium compounds (Heck-type reaction) is known to be a useful method for carbon-carbon bond formation at unsubstituted vinyl positions. The first report on the application of microwave methodology to this type of reaction was published by Hallberg et al. in 1996 [86], Recently, the palladium catalyzed Heck coupling reaction induced by microwave irradiation was reported under solventless liquid-liquid phase-transfer catalytic conditions in the presence of potassium carbonate and a small amount of [Pd(PPh3)2Cl2]-TBAB as a catalyst [87]. The arylation of alkenes with aryl iodides proceeded smoothly to afford exclusively trans product in high yields (86-93%) (Eq. 61). [Pg.176]

Hydrosilanes react with butadiene by the catalysis of palladium compounds, but the nature of the reaction is somewhat different from that of the telomerization of other nucleophiles described before. Different products are obtained depending on both the structure of silanes and the reaction conditions. Trimethylsilane and other trialkylsilanes reacted with butadiene to give the 1 2 adduct, l-trialkylsilyl-2,6-octadienes (65), in high yield (98%) (62-64). Unlike other telomers which have the 1,6-octadienyl chain, the telomers of silanes have the 2,6-octadienyl chain. As catalysts, Pd(PPh3)2 (maleic anhydride), PdCl2(PhCN)2, PdCl2, and 7r-allylpalladium chloride were used. Methyldiethoxysilane behaved similarly to give the 1 2 adduct. [Pg.162]

Palladium metal clusters confined in zeolites have been prepared from Pd (CO)y species accommodated in zeolite cages. These species can be obtained by carbon-ylation of impregnated or exchanged palladium compounds such as PdCh or [Pd(NH3)4] [47, 48]. [Pg.320]

The brown colour may be caused by traces of palladium or Pd compounds. If the product has a reasonable thermal stability and the boiling point is not too high, purification may be carried out more quickly by distillation in vacuo. [Pg.219]


See other pages where Palladium compounds Pd is mentioned: [Pg.216]    [Pg.3540]    [Pg.3539]    [Pg.305]    [Pg.216]    [Pg.3540]    [Pg.3539]    [Pg.305]    [Pg.559]    [Pg.183]    [Pg.200]    [Pg.70]    [Pg.589]    [Pg.602]    [Pg.603]    [Pg.647]    [Pg.1002]    [Pg.80]    [Pg.91]    [Pg.182]    [Pg.218]    [Pg.617]    [Pg.147]    [Pg.145]    [Pg.26]    [Pg.7]    [Pg.102]    [Pg.106]    [Pg.286]    [Pg.174]   
See also in sourсe #XX -- [ Pg.2 , Pg.3 , Pg.84 , Pg.256 ]




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