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Rhodium water-soluble

Recently a rhodium water-soluble polymer-bound catalyst, based on the commercially available copolymer of maleic anhydride and methyl vinyl ether, was shown to be very active in the hydrogenation of various substrates in basic aqueous media [25]. [Pg.44]

Apparently no olefin containing microemulsions were formed in the presence of randomly methylated cyclodextrins (Rame-CDs, Scheme 5.3). The olefin is solubilized to the aqueous phase for hydroformylation with a rhodium/water soluble... [Pg.119]

In the mid-1980s, Ruhrchemie (now Hoechst) converted its oxo capacity to a proprietary water soluble rhodium catalyzed process (27,28), a technology developed jointly with Rhc ne-Poulenc. Product separation in this process is by decantation. Isomer ratios of n- to isobutyraldehyde of about 20 1 are obtained. [Pg.380]

About 86% of Hoechst s butanal is produced with the Rhc )ne-Poulenc water-soluble rhodium catalyst the remainder is stiU based on cobalt. [Pg.381]

A new homogeneous process for hydroformylation of olefins using a water-soluble catalyst has been developed (40). The catalyst is based on a rhodium complex and utilizes a water-soluble phosphine such as tri(M-sulfophenyl)phosphine. The use of an aqueous phase simplifies the separation of the catalyst and products (see Oxo process). [Pg.51]

Although rhodium recovery is efficient it is difficult to separate it from heavies that are formed in small amounts. Over time these heavies tend to result in some catalyst deactivation. One solution to this problem has been developed by Ruhrchemie/Rhone-Poulenc. In this process sulfonated triphenyl phosphine is used as the ligand, which imparts water solubility to the catalyst. The reaction is two-phase, a lower aqueous phase containing the catalyst and an upper organic phase. Fortunately the catalyst appears to sit at the interface enabling reaction to proceed efficiently. At the end of... [Pg.111]

This H-transfer reduction with sodium formate and employing catalysis by a water-soluble rhodium-phosphine catalyst yields dimethyl methylsuccinate [117]. [Pg.509]

Sodium salts of sulfonated triphenylphosphine P(m-C5H4S03Na)3 or alkyltriphenyl-methyltrisulfonates function as stabilizers for hydrosols of colloidal rhodium and (C6H5)2P-p-C6H5S03Na has been used by Schmid to prepare water soluble gold clusters which are isolable and redispersible without agglomeration [202]. [Pg.29]

An example of a large scale application of the aqueous biphasic concept is the Ruhrchemie/Rhone-Poulenc process for the hydroformylation of propylene to n-butanal (Eqn. (15)), which employs a water-soluble rhodium(I) complex of trisulphonated triphenylphosphine (tppts) as the catalyst (Cornils and Wiebus, 1996). [Pg.46]

Hydroaminomethylation of alkenes occurred to give both n- and /. so aliphatic amines catalyzed by [Rh(cod)Cl]2 and [Ir(cod)Cl]2 with TPPTS in aqueous NH3 with CO/H2 in an autoclave. The ratio of n-and /.soprimary amines ranged from 96 4 to 84 16.178 The catalytic hydroaminomethylation of long-chain alkenes with dimethylamine can be catalyzed by a water-soluble rhodium-phosphine complex, RhCl(CO) (Tppts)2 [TPPTS P(m-C6H4S03Na)3], in an aqueous-organic two-phase system in the presence of the cationic surfactant cetyltrimethy-lammonium bromide (CTAB) (Eq. 3.43). The addition of the cationic surfactant CTAB accelerated the reaction due to the micelle effect.179... [Pg.77]

Wender et al. reported a [5+2] cycloaddition in water by using a water-soluble rhodium catalyst having a bidentate phosphine ligand to give a 7-membered ring product (Eq. 4.69). This water-soluble catalyst was reused eight times without any significant loss in catalytic activity.133... [Pg.138]

Rhodium-catalyzed Heck-type coupling of boronic acids with activated alkenes was carried out in an aqueous emulsion.82 The couplings between arylboronic acids and activated alkenes catalyzed by a water-soluble tm-butyl amphosrhodium complex were found to progress at room temperature to generate Heck-type products with high yields and excellent selectivity. It was necessary to add two equivalents of the... [Pg.328]

Considerable work has been conducted on a water-soluble catalyst using sulfonated phosphine-modified rhodium. Details of this chemistry will be described in Chapter 5. The general concept (Figure 2.3) is to make the catalyst water soluble, then after product formation, decant the product. In order for the water-soluble catalyst to be effective, the alkene must dissolve in the aqueous layer. This has been demonstrated on a commercial basis using propene. The low solubility of higher alkenes in the aqueous catalyst layer has proven problematic. The desirable characteristic of the ligand, water solubility, is needed in the separation step but is a disadvantage in the reaction step. [Pg.15]

This Chapter will concentrate on the hydroformylation of propene by means of rhodium catalysts, modified by water-soluble ligands such as TPPTS (triphenylphosphine m-trisulfonate). [Pg.106]


See other pages where Rhodium water-soluble is mentioned: [Pg.415]    [Pg.415]    [Pg.2701]    [Pg.2]    [Pg.165]    [Pg.469]    [Pg.168]    [Pg.180]    [Pg.522]    [Pg.257]    [Pg.1120]    [Pg.1120]    [Pg.401]    [Pg.266]    [Pg.272]    [Pg.72]    [Pg.250]    [Pg.45]    [Pg.76]    [Pg.132]    [Pg.216]    [Pg.217]    [Pg.113]    [Pg.113]    [Pg.114]    [Pg.115]    [Pg.116]    [Pg.118]    [Pg.121]    [Pg.123]    [Pg.178]    [Pg.826]    [Pg.25]    [Pg.113]    [Pg.328]    [Pg.368]    [Pg.80]   
See also in sourсe #XX -- [ Pg.419 , Pg.430 ]




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Hydroformylation water-soluble rhodium-phosphine complex

Rhodium water

Rhodium-catalyzed hydroformylation water-soluble catalysts

Ruhrchemie water-soluble rhodium catalyst

Two-Phase (Water-Soluble) Rhodium Hydroformylation Catalysts

Water-Soluble Phosphines and Rhodium Recovery

Water-Soluble Rhodium-Phosphine Complex Catalytic Systems

Water-soluble catalyst, rhodium-phosphine

Water-soluble catalyst, rhodium-phosphine complex systems

Water-soluble rhodium catalyst

Water-soluble rhodium complex

Water-soluble rhodium hydroformylation

Water-soluble rhodium hydroformylation catalysts

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