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Exchange reactions, synthesis

As described above, the non-oxidative substitution of chlorine by activated fluorine is one of the most important synthetic routes from the industrial point of view. In these reactions, a C—Cl is replaced by a C—F bond using an appropriate fluorinating agent such as HF. Among all technically-relevant catalysed halogen exchange reactions, synthesis of chlorofluorocarbons, hydrochlorofluorocarbons, and hydrofluorocarbons performed according Eqn. (1) are doubtless the most important processes. [Pg.371]

Chelate Exchange. Metal derivatives of j3-keto imines can be prepared by a chelate-exchange reaction (synthesis 1). [Pg.50]

The key step in the total synthesis of rhizobitoxine is the Pd-catalyzed exchange reaction of the methyl alkenyl ether moiety in 4 with the functionalized alcohol, although the yield is low[3]. The enol pyruvate 6 (a-ethoxyacrylic acid) is prepared by the reaction of methyl a-methoxyacrylate or a-methoxy-acrylic acid (5) with ethanol catalyzed by PdCl2(PhCN)2 at room temperature in the presence of CuCli and NaH2P04[4],... [Pg.529]

Fluorinated and iodinated derivatives are usually prepared by halogen exchange reactions, although the Baltz-Schiemann reaction has been applied to the synthesis of 2-fluoroquin-oxaline (66JHC435>. [Pg.176]

The metal-halogen exchange reaction is useful in the synthesis of numerous perfluoroalkylmagnesium halides, some of which are shown in Table 2... [Pg.653]

Although the metal-halogen exchange reaction is the preferred method of synthesis, the conventional Grignard synthesis through the reaction of a per-fluoroorgano halide and magnesium occasionally is still used [49, 50]... [Pg.653]

Conversion of the carboxylic acid to the diethyl amide interestingly leads to an agent that exhibits the properties of a respiratory stimulant. One synthesis of this agent starts with the preparation of the mixed anhydride of nicotinic and benzene-sulfonic acid (4). An exchange reaction between the anhydride and diethyl benzenesulfonamide affords nikethemide (5). ... [Pg.253]

Rolgamidine (14) is a dihydropyrrole derivative which has antidiarrheal activity It can be synthesized by alkylation of trans 2,5-dimethyl-3 pyrroline (12) with methyl bromoacefate to give 13 An amide-ester exchange reaction with guanidine hydrochloride completes the synthesis of rolgamidine (14) [3]... [Pg.80]

All the halide exchange reactions mentioned above proceed more or less quantitatively, causing greater or lesser quantities of halide impurities in the final product. The choice of the best procedure to obtain complete exchange depends mainly on the nature of the ionic liquid that is being produced. Unfortunately, there is no general method to obtain a halide-free ionic liquid that can be used for all types of ionic liquid. This is explained in a little more detail for two defined examples the synthesis of [BMIM][(CF3S02)2N] and the synthesis of [EMIM][BF4]. [Pg.25]

The extensive possibilities of the practical application of synthesis, and the study of the properties of ion-ex-change resins have aroused widespread interest in chemistry. This chapter discusses some theoretical problems with cationic resins as catalysts in hydrolysis reactions. New types of cationic resins have been examined and some important generalizations on ion-exchange reactions have been formulated. [Pg.775]

Synthesis and Exchange Reactions of 2- Bis(morpholino)phosphinoyloxy -3ff-l,4-benzodiazepines... [Pg.409]

The subunits of CODH/ACS have been isolated (see earlier discussion). The isolated a subunit contains one Ni and four Fe and has spectroscopic properties (186) similar to those of Cluster A, the active site of acetyl-CoA synthesis (212). Unfortunately, it has no ACS activity. Therefore, ACS activity may reside in the a subunit or it may require both the a and the fi subunits. If Clusters B and/or C of the B subunit are involved in acetyl-CoA synthesis, one possible role could be in electron transfer. Although acetyl-CoA synthesis and the CO/ exchange reactions do not involve net electron transfer, both of these reactions are stimulated by ferredoxin, indicating that internal electron transfer within CODH/ACS may be required during the reaction (121). Further studies with the isolated subunits and the reconstitu-... [Pg.325]

The reaction of the stabilized yUde 46 (a-vinyl substituted) with the cycloocta-dienyl Pd(II) allows the synthesis of a novel complex, the (rj -allyl)palladium 47, in which the olefmic double bond participates in the coordination (Scheme 20) [83]. The coordination of the bis-yUde 48 with the same starting Cl2Pd(COD) leads to the formation of another new palladium complex 49 via COD exchange reactions. A C-coordination mode takes place between the carbanionic centers of the bis-ylide and the soft palladium and two stereogenic centers of the same configuration are thus created [83]. In contrast to the example described in Scheme 19, the Cl2M(COD) (M=Pd or Pt), in presence of a slightly different car-... [Pg.56]

This study presents kinetic data obtained with a microreactor set-up both at atmospheric pressure and at high pressures up to 50 bar as a function of temperature and of the partial pressures from which power-law expressions and apparent activation energies are derived. An additional microreactor set-up equipped with a calibrated mass spectrometer was used for the isotopic exchange reaction (DER) N2 + N2 = 2 N2 and the transient kinetic experiments. The transient experiments comprised the temperature-programmed desorption (TPD) of N2 and H2. Furthermore, the interaction of N2 with Ru surfaces was monitored by means of temperature-programmed adsorption (TPA) using a dilute mixture of N2 in He. The kinetic data set is intended to serve as basis for a detailed microkinetic analysis of NH3 synthesis kinetics [10] following the concepts by Dumesic et al. [11]. [Pg.318]


See other pages where Exchange reactions, synthesis is mentioned: [Pg.506]    [Pg.252]    [Pg.784]    [Pg.785]    [Pg.786]    [Pg.789]    [Pg.792]    [Pg.647]    [Pg.647]    [Pg.653]    [Pg.696]    [Pg.186]    [Pg.14]    [Pg.26]    [Pg.178]    [Pg.515]    [Pg.519]    [Pg.536]    [Pg.75]    [Pg.122]    [Pg.143]    [Pg.162]    [Pg.163]    [Pg.221]    [Pg.235]    [Pg.1201]    [Pg.192]    [Pg.786]    [Pg.158]    [Pg.319]    [Pg.323]    [Pg.326]    [Pg.75]   


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A Novel Synthesis of Vinyl Ethers via an Unusual Exchange Reaction

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