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Xantphos

The authors optimised conditions for the general reaction of 1,1-diphenylethylene and piperidine (Scheme 9.5). They obtained the highest TOF (288 h" ) and all linear product for this specific reaction when using complex 31 and 5 1 H iCO at 125°C for 24 h. An important note here is that the sterics of the substrate, 1,1-diarylethyl-enes, are responsible for generation of only linear products instead of the catalyst. With a one-pot method, the authors procured the active pharmaceuticals prozapine, fendilline, milverine, and diisopromine in 85%, 91%, 35% and 88% yield, respectively. The catalyst activities compare well to the established Rh-Xantphos system [33]. [Pg.225]

Palladium acetate in conjunction with a diphosphine ligand, xantphos, is active for arylation of amides, ureas, oxazolidinones and sulfonamides.174... [Pg.1049]

Much progress has been made on regioselective hydroformylation of terminal alkenes in favor of the linear product. In particular bidentate phosphine or phosphite ligands, which have a natural bite angle 9 of about 110°, will favor the linear product. The most successful ligand types are BISBI [49, 50], BIPHEPHOS [51,52], and XANTPHOS systems (Scheme 8) [53]. [Pg.153]

A new chiral auxiliary based on a camphor-derived 8-lactol has been developed for the stereoselective alkylation of glycine enolate in order to give enantiomerically pure a-amino acid derivatives. As a key step for the synthesis of this useful auxiliary has served the rc-selective hydroformylation of a homoallylic alcohol employing the rhodium(I)/XANTPHOS catalyst (Scheme 11) [56]. [Pg.155]

Hydroformylation of alkenes can be carried out in a few minutes under microwave activation at a relatively low pressure (2.7 bar) employing the rhodium(I)/XANTPHOS catalyst. The presence of the ionic liquid butyl-methylimdazolium tetrafluoroborate ([bmim][BF4]) was crucial. Unfortu-... [Pg.155]

Increasing the hydrogen partial pressure enables a subsequent enam-ine/immonium hydrogenation and thus leads to an n-regioselective hydro aminomethylation of terminal alkenes. In this case the optimal results were obtained with the rhodium(I)/XANTPHOS catalyst (Scheme 14) [59]. [Pg.156]

BINAP = 2,2-bis(triphenylphosphino)-1,1-binaphthalene XANTPHOS = 4,5-bis(diphenylphosphino)-9,9-dimethylxanthene... [Pg.993]

Phosphacyclic diphosphines (73a) and (73b) with wide natural bite angles were synthesized and the effect of the phosphacyclic moieties on the coordination chemistry in the [(diphosphine) Rh(CO)2H] complexes was studied. Both NMR and IR spectroscopy showed that the phosphacyclic xantphos ligands exhibit an enhanced preference for diequatorial chelation compared to the diphenylphosphino-substituted parent compound. In the hydroformylation of 1-octene the introduction of the phosphacyclic moieties leads to higher reaction rates. The dibenzophospholyl- and phenoxaphosphino-substituted xantphos ligands exhibit a high activity and selectivity in the hydroformylation of trans-2- and 4-octene to linear nonanal. CO dissociation rates from the... [Pg.160]

The synthesis, aggregation behavior, and catalytic activity of Rh complexes of Xantphos derivatives (129) with surface-active pendant groups have been described.416 The complex [HRh(CO)(TPPTS)3] was used as a catalyst precursor in the hydroformylation of 1-butene, 1-octene, and styrene under biphasic reaction conditions 417 The two-phase hydroformylation of buta-1,3-diene with [HRh(CO)(TPPTS)3], with excess TPPPS, gives high yields of C5-monoaldehydes.418 The coordination behavior of the catalytic species HRh(130)(CO)2] was studied by HP NMR spectroscopy which showed the desired bis-equatorial coordination of the ligand to the rhodium center.419... [Pg.177]

Bidentate ligands with very wide bite angles (like dpephos or xantphos, Scheme 4) are likely to form unstable chelates prone to dechelation at elevated temperatures, thus giving another route to monophosphine species. The application of such ligands to the crosscoupling of sterically hindered bromides and arylboronic acids under strictly anhydrous conditions enforced by the addition of molecular sieves has been shown to be advantageous (118).398... [Pg.350]

Amides and sulfonamides undergo intramolecular chemistry to form aryl amides and aryl sulfonamides (Equations (17)—(19)) in the presence of palladium catalysts ligated by arylphos-phines.35,89 Initially, complexes of P(furyl)3 and P(o-tol)3 were most effective catalysts, but complexes of Hayashi s MOP and van Leeuwen s DPEphos and xantphos have lately been shown to be more active.90 In the presence of catalysts containing one of these ligand systems, five-, six-, and seven-membered rings were formed from halogenated benzamides or from substrates containing an acetamide, an A-carbobenzyloxy, or a t-butylcarbamate substituent tethered to the aryl halide (Equations (18) and (19)) ... [Pg.379]

The intermolecular coupling of lactams and acyclic amides has also been reported. Reactions of carbamates with aryl halides occurred in the presence of catalysts ligated by P(/-Bu)3.78 Both carbamates and amides coupled with aryl halides in the presence of a catalyst bearing Xantphos.90 In addition, the coupling of lactams with aryl halides has been successful. A combination of Pd(OAc)2 and DPPF first formed A-aryl lactams in good yields from 7-lactams, but the arylation of amides was improved significantly by the use of Xantphos (Equations (20) and (21)).90 91 The reaction of aryl halides with vinyligous amides has also been reported 92... [Pg.379]

The lesson learned from the catalysis in interphase approach is that the spacer between the insoluble support and the actual catalyst should be sufficiently long and soluble in the solvent of interest to obtain active catalysts. The use of supercritical fluids can also be very beneficial for the activity. Upon using Xantphos immobilised on silica in scC02 for example, the rates are only half of those of the homogeneous catalyst. Expressed as space-time yields the solid catalysts are almost an order of... [Pg.68]

A set of core-functionalized dendrimers was synthesized by Van Leeuwen et al. and one compound was applied in continuous catalysis. [45] The dendritic dppf, Xantphos and triphenylphosphine derivatives (Figures 4.22, 4.30 and 4.31) were active in rhodium-catalyzed hydroformylation and hydrogenation reactions (performed batch-wise). Dendritic effects were observed which are discussed in paragraph 4.5. The dendritic rhodium-dppf complex was applied in a continuous hydrogenation reaction of dimethyl itaconate. [Pg.88]

The last example of a dendritic effect discussed in this chapter is the use of core-functionalized dendritic mono- and diphosphine rhodium complexes by Van Leeuwen el al. [45] Carbosilane dendrimers were functionalized in the core with Xantphos, bis(diphenylphosphino)ferrocene (dppf) and triphenylphosphine (Figures 4.22, 4.32 and 4.33). [Pg.94]

Figure 4.32. Triphenylphosphine derived dendrimer Figure 4.33. Xantphos-derived dendrimer... Figure 4.32. Triphenylphosphine derived dendrimer Figure 4.33. Xantphos-derived dendrimer...
Figure 7.8. Unmodified xantphos (a), sulfoxantphos (b) and guanidinium-modified xantphos ligand (c) as used in the biphasic, Rh-catalysed hydroformylation of 1-octene... Figure 7.8. Unmodified xantphos (a), sulfoxantphos (b) and guanidinium-modified xantphos ligand (c) as used in the biphasic, Rh-catalysed hydroformylation of 1-octene...
More recently, during research aimed at supporting the highly linear selective hydroformylation catalyst [Rh(H)(Xantphos)(CO)2] onto a silica support, the presence of a cationic rhodium precursor in equilibrium with the desired rhodium hydride hydroformylation catalyst was observed. The presence of this complex gave the resulting catalyst considerable hydrogenation activity such that high yields of linear nonanol could be obtained from oct-1-ene by domino hy-droformylation-reduction reaction [75]. [Pg.437]

Another important highly selective and stable hydroformylation sol gel catalyst is made of silica-supported rhodium covalently bound to supported Xantphos family of ligands.36 By incorporating monoliths of the sol-gel doped material into the paddles of an autoclave stirrer, the catalyst (Rotacat) can be used in a continuous liquid flow process. A single sample of this catalyst was used for a variety of different hydroformylation reactions under widely varying conditions over a period of more than a year, still retaining its selective activity. [Pg.138]


See other pages where Xantphos is mentioned: [Pg.258]    [Pg.262]    [Pg.154]    [Pg.155]    [Pg.155]    [Pg.156]    [Pg.157]    [Pg.157]    [Pg.158]    [Pg.993]    [Pg.152]    [Pg.161]    [Pg.164]    [Pg.189]    [Pg.279]    [Pg.280]    [Pg.379]    [Pg.380]    [Pg.221]    [Pg.228]    [Pg.229]    [Pg.336]    [Pg.338]    [Pg.398]    [Pg.457]    [Pg.68]    [Pg.196]    [Pg.204]    [Pg.210]    [Pg.230]    [Pg.411]   
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Pd/xantphos

Rhodium-xantphos catalyst system

XANTPHOS, sulfonated

Xantphos complex

Xantphos family

Xantphos ligands

Xantphos ligands tunable bite angles

Xantphos ligands tuneable bite angles

Xantphos ligands, electronic effects

Xantphos trans complexes

Xantphos, investigations with

Xantphos-based diphosphine

Xantphos-based diphosphine ligands

Xantphos-type diphosphine

Xantphos-type ligands

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