Big Chemical Encyclopedia

Chemical substances, components, reactions, process design ...

Articles Figures Tables About

Hydrogenation dynamic kinetic resolution

An efficient dynamic kinetic resolution is observed when an a-bromo- or a-acetylamino-/3-keto phosphate is subjected to the hydrogenation with an Ru-BINAP catalyst under suitable conditions. With RuC12[(A)-BINAP](DMF) (0.18 mM) as the catalyst, a racemic a-bromo-/3-keto phosphonate is hydrogenated at 25 °G under... [Pg.49]

Hydrogen transfer reactions are reversible, and recently this has been exploited extensively in racemization reactions in combination with kinetic resolutions of racemic alcohols. This resulted in dynamic kinetic resolutions, kinetic resolutions of 100% yield of the desired enantiopure compound [30]. The kinetic resolution is typically performed with an enzyme that converts one of the enantiomers of the racemic substrate and a hydrogen transfer catalyst that racemizes the remaining substrate (see also Scheme 20.31). Some 80 years after the first reports on transfer hydrogenations, these processes are well established in synthesis and are employed in ever-new fields of chemistry. [Pg.586]

The next step in the use of transfer hydrogenation catalysts for recycling of the unwanted enantiomer is the dynamic kinetic resolution. This is a combination of two reaction systems (i) the continuous racemization of the alcohol via hydrogen transfer and (ii) the enantioselective protection of the alcohol using a... [Pg.612]

It is important that the catalysts are stable in each other s presence. Typically, kinetic resolution of the reaction is performed with an enzyme, which always will contain traces of water. Hence, MPVO catalysts and water-sensitive transition-metal catalysts cannot be used in these systems. The influence of the amount of the hydrogen acceptor in the reaction mixture during a dynamic kinetic resolution is less pronounced than in a racemization, since the equilibrium of the reaction is shifted towards the alcohol side. [Pg.613]

The sense of diastereoselectivity in the dynamic kinetic resolution of 2-substi-tuted / -keto esters depends on the structure of the keto ester. The ruthenium catalyst with atropisomeric diphosphine ligands (binap, MeO-biphep, synphos, etc.) induced syn-products in high diastereomeric and enantiomeric selectivity in the dynamic kinetic resolution of / -keto esters with an a-amido or carbamate moiety (Table 21.21) [119-121, 123, 125-127]. In contrast to the above examples of a-amido-/ -keto esters, the TsOH or HC1 salt of /l-keto esters with an a-amino unit were hydrogenated with excellent cwti-selectivity using ruthenium-atropiso-... [Pg.698]

Fig. 32.24 Hydrogenation of racemic 2-alkoxycarbonyl cy-cloalkanones via dynamic kinetic resolution. Fig. 32.24 Hydrogenation of racemic 2-alkoxycarbonyl cy-cloalkanones via dynamic kinetic resolution.
Fig. 32.26 Hydrogenation of acyclic a-substituted yfi-keto esters via dynamic kinetic resolution. Fig. 32.26 Hydrogenation of acyclic a-substituted yfi-keto esters via dynamic kinetic resolution.
The stereoselective hydrogenation of a-substituted / -keto carboxylates and phosphonates via dynamic kinetic resolution catalyzed by a BINAP-Ru com-... [Pg.1130]

Fig. 32.27 Hydrogenation of a-substituted /i-keto phospho-nates via dynamic kinetic resolution. Fig. 32.27 Hydrogenation of a-substituted /i-keto phospho-nates via dynamic kinetic resolution.
Fig. 32.28 Examples of bioactive compounds and chiral diphosphines obtainable by BlNAP-Ru-catalyzed hydrogenation via dynamic kinetic resolution. Fig. 32.28 Examples of bioactive compounds and chiral diphosphines obtainable by BlNAP-Ru-catalyzed hydrogenation via dynamic kinetic resolution.
Fig. 32.46 Hydrogenation of racemic 2-substituted cyclohexanones through dynamic kinetic resolution catalyzed by BINAP/chiral diamine-Ru complexes with base. Fig. 32.46 Hydrogenation of racemic 2-substituted cyclohexanones through dynamic kinetic resolution catalyzed by BINAP/chiral diamine-Ru complexes with base.
Fig. 32.47 Biologically active compounds achievable by Bl-NAP/1,2-diamine— Ru-catalyzed hydrogenation of 2-substituted cyclohexanones through dynamic kinetic resolution. Fig. 32.47 Biologically active compounds achievable by Bl-NAP/1,2-diamine— Ru-catalyzed hydrogenation of 2-substituted cyclohexanones through dynamic kinetic resolution.
Fig. 32.48 Hydrogenation of racemic 2-phenylpropiophenone through dynamic kinetic resolution. Fig. 32.48 Hydrogenation of racemic 2-phenylpropiophenone through dynamic kinetic resolution.
Transfer hydrogenation is a mild and efficient means of reducing aldehydes, and can be advantageous over other reagents such as sodium borohydride. Clearly, the product is a primary alcohol and therefore not chiral, but a chiral center might be alpha to the aldehyde, in which case a resolution can be effected. Indeed, under the appropriate conditions the chiral center can be race-mized and a dynamic kinetic resolution effected [57]. [Pg.1229]

The hydrogenation of a-amino ketones was also a key step for the synthesis of three more pharma actives (Fig. 37.25). Roche [95] divulged a pilot process involving the hydrogenation/dynamic kinetic resolution of a cyclic a-amino ketone using an optimized MeO-biphep ligand. The Ru-catalyzed reaction was carried out on a 9-kg scale with excellent enantio- and diastereoselectivities, and very... [Pg.1302]

Fig. 37.27 Hydrogenation/dynamic kinetic resolution of a penem intermediate. Fig. 37.27 Hydrogenation/dynamic kinetic resolution of a penem intermediate.
The reversibility of hydrogen transfer reactions has been exploited for the racemi-zation of alcohols and amines. By coupling the racemization process with an enantioselective enzyme-catalyzed acylation reaction, it has been possible to achieve dynamic kinetic resolution reactions. The combination of lipases or... [Pg.94]

Dynamic kinetic resolution (DKR) is an attractive protocol for the production of enantiopure compounds from racemic mixtures [45]. The concept of DKR is illustrated in Scheme 5.13. In many cases, DKRs are accomplished by the combination of enzymatic resolution and transition-metal-catalyzed racemization based on hydrogen transfer. Thus, the use of Cp Ir complexes as catalysts for racemization in DKR can be anticipated. [Pg.118]

Miscellaneous Reactions Berkessel " has identified peptide-like urea-based bifiinctional organocatalysts for the highly efficient dynamic kinetic resolution of azalactones (Scheme 11.14a). Another selective hydrogen-bonding activation mechanism that enables the addition of pyrroles to ketenes using catalytic quantities of azaferrocene 36 has been introduced by Fu and coworkers (Scheme 11.14b). ° ... [Pg.333]

The synthesis of jS-hydoxy-a-amino acids is important since these compounds are incorporated into the backbone of a wide range of antibiotics and cyclopeptides such as vancomycins. These highly functional compounds are also subject to dynamic kinetic resolution (DKR) processes, as the stereocenter already present in the substrate epimerizes under the reaction conditions and hence total conversions into single enantiomers are possible. These transformations can be iy -selective ° for N-protected derivatives as shown in Figure 1.27 when using a mthenium-BlNAP catalyzed system and anfi-selective when the jS-keto-a-amino acid hydrochloride salts are reduced by the iridium-MeOBlPHEP catalyst as shown in Figure 1.28. One drawback is that both these reductions use 100 atm hydrogen pressure. [Pg.15]


See other pages where Hydrogenation dynamic kinetic resolution is mentioned: [Pg.52]    [Pg.52]    [Pg.52]    [Pg.52]    [Pg.337]    [Pg.135]    [Pg.253]    [Pg.284]    [Pg.5]    [Pg.43]    [Pg.43]    [Pg.44]    [Pg.44]    [Pg.53]    [Pg.697]    [Pg.698]    [Pg.701]    [Pg.701]    [Pg.1128]    [Pg.1128]    [Pg.1131]    [Pg.1151]    [Pg.1240]    [Pg.1305]    [Pg.193]    [Pg.155]    [Pg.95]    [Pg.361]    [Pg.412]    [Pg.19]    [Pg.232]    [Pg.30]    [Pg.131]   


SEARCH



Dynamic kinetic resolution

Dynamic kinetic resolution asymmetric transfer hydrogenation

Dynamic resolutions

Hydrogen kinetics

Hydrogenation kinetic resolution

Hydrogenation kinetics

Kinetic dynamic

Kinetic resolutions dynamic resolution

Kinetics dynamic kinetic resolution

Ru-catalyzed hydrogenation of racemic 2-substituted aldehydes via dynamic kinetic resolution

© 2024 chempedia.info