2012
DOI: 10.1039/c1cy00409c
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Efficient and chemoselective ethene hydromethoxycarbonylation catalysts based on Pd-complexes of heterodiphosphines o-C6H4(CH2PtBu2)(CH2PR2)

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Cited by 32 publications
(31 citation statements)
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“…Later, Pringle’s20b group demonstrated that unsymmetrical ligand S (Figure 5) also outperformed its symmetrical analogues in the methoxycarbonylation of ethylene. In this case, the electron‐poorer phosphine also has an extreme steric requirement that favors the formation of MeP 10a.…”
Section: Methodsmentioning
confidence: 99%
“…Later, Pringle’s20b group demonstrated that unsymmetrical ligand S (Figure 5) also outperformed its symmetrical analogues in the methoxycarbonylation of ethylene. In this case, the electron‐poorer phosphine also has an extreme steric requirement that favors the formation of MeP 10a.…”
Section: Methodsmentioning
confidence: 99%
“…8,9 It is clear from Fig. 1 and 2 that the z-coordinates of the backbone phenylene group render the CH 2 protons and the t Bu substituents inequivalent in both 1a and 2a.…”
Section: Platinum(ii) and Palladium(ii) Coordination Chemistrymentioning
confidence: 95%
“…111 The field of hydro/methoxycarbonylation of ethylene to methyl propanoate using BTDPMB-based systems and variations of the ligand has been recently reviewed by Fanjul and co-workers. [112][113][114] Drent and Jager have shown the BTDPMB/palladium system to give methyl pentanoate from 2-butene in 97% selectivity at 65 bar and 100℃, 115 showing the methoxycarbonylation of a carbon chain longer than ethylene was possible. The same authors desired to increase the selectivity to the linear ester and found that using a mixture anisole/methanol : 2/1 as a solvent for the methoxycarbonylation of 2-butene and 1-octene yielded a full conversion to the ester with high selectivity to the linear species (97%).…”
Section: The Alkoxycarbonylation Of Simple Alkenesmentioning
confidence: 99%