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Acid catalysis hydrolysis

Acid catalysis—hydrolysis. Several series of alkylsilane esters were studied to determine the effect of silane structure on the hydronium ion catalyzed hydrolysis reaction. The hydronium ion catalyzed hydrolysis rate constants for a series of alkyl tris-(2-methoxyethoxy)silanes in aqueous solution were used to define the modified Taft equation log(A /Ah ) = 0.39a + 1.06ES, where Ho is the rate of hydrolysis for methyl tris-2-(methoxyethoxy)silane [42], The hydronium ion catalyzed hydrolysis rate constants and the reaction half-lives are reported in Table 2. In a similar manner, the hydronium ion catalyzed hydrolysis rate constants for a series of trialkylalkoxysilanes in 55% aqueous acetone were used to obtain the modified Taft equation log(/cH//cHo) = -0.37 a + 2.48 E where kHo is the rate of hydrolysis for trimethylalkoxy-silane. [Pg.128]

The best way to immobilize an enzyme while affecting its structure as little as possible is to encapsulate it Out of all the different encapsulation methods the most prominent and widely used is the sol gel technique [5, 7, 62). Sol gels are highly porous silica materials that are readily prepared and modified (Scheme 2.5). The sol gel obtained is a chemically inert glass that be formed into any desired shape and can be designed to be thermally and mechanically very stable. Most importantly the synthesis proceeds under condihons that are relatively benign for many enzymes. In the first step a tetra-aUcoxysilane such as tetramethoxylsilane (TMOS) is hydrolysed by acid catalysis. Hydrolysis is followed by condensation and the sol is formed, which is a mixture of partially hydrolyzed and partially... [Pg.31]

Abstract This chapter explores the role of abiotic reactions such as acid catalysis (hydrolysis) as well as the adsorption of methyl tert-butyl ether (MTBE) and other fuel oxygenates in environmental issues as the remediation of these substances is notoriously difficult. First of all, these methods are briefly classified with other abiotic technologies. The suitability of hydrolysis and adsorption for the remediation of water contaminated by fuel oxygenates is then discussed in detail, with information being provided about the principle of the reactions, potential catalysts and sorbents, limitations of the reactions, and practical implications. To conclude, the possible application of hydrolysis and adsorption in combination with other remediation techniques is also examined. [Pg.191]

Keywords Adsorption Acid catalysis Hydrolysis Abiotic remediation... [Pg.191]

As an example, experimental kinetic data on the hydrolysis of amides under basic conditions as well as under acid catalysis were correlated with quantitative data on charge distribution and the resonance effect [13]. Thus, the values on the free energy of activation, AG , for the acid catalyzed hydrolysis of amides could be modeled quite well by Eq. (5)... [Pg.183]

Pos twe-Tone Photoresists. The ester, carbonate, and ketal acidolysis reactions which form the basis of most positive tone CA resists are thought to proceed under specific acid catalysis (62). In this mechanism, illustrated in Figure 22 for the hydrolysis of tert-huty acetate (type A l) (63), the first step involves a rapid equihbrium where the proton is transferred between the photogenerated acid and the acid-labile protecting group ... [Pg.126]

Hydrolysis of Dimethyl Terephthalate. Hoechst Celanese and Eormosa Chemical Eibers Corp. produce a polymer-grade terephthahc acid by hydrolysis of high purity dimethyl terephthalate. Hbls-Troisdorf AG hcenses a process with this step (70). Hydrolysis occurs at 260—280°C and 4500—5500 kPa (45—55 atm) in a hydrolysis reactor without catalysis. The overhead methanol and water vapor is separated and the methanol is returned to the dimethyl terephthalate section for reuse. The reactor hquid is crystallized, cycloned, washed, and further cooled. Einahy, the slurry is centrifuged and dried. The product has less than 25 ppm of 4-formylbenzoic acid and very low levels of other impurities. There may be several hundred parts per million of monomethyl terephthalate, which is incompletely hydrolyzed dimethyl terephthalate. [Pg.490]

In the esterification of organic acids with alcohols, it has been shown that in most cases under acid catalysis, the union is between acyl and alkoxy groups. Acid hydrolysis of acetoxysuccinic acid gives malic acid with retention of configuration at the asymmetric carbon atom (11) ... [Pg.374]

The 1-azirine ring also undergoes a number of reactions in which the heterocycle plays the role of the nucleophile. Although the basicity of the nitrogen atom in the azirine ring is much lower than in simple aliphatic amines, this system can still function as a nucleophilic reagent. One example of this involves the acid-catalyzed hydrolysis of 1-azirines to a-aminoketones (200) which represents a well-established reaction. In fact, in many reactions of 1-azirines where acid catalysis is used, formation of a-aminoketones is difficult to avoid (67JA44S6). [Pg.69]

Zn/EtOAc or THF, reflux, 3-12 h, 40-100% yield. It is more efficient to prepare this ketal by an exchange reaction with the dimethyl or diethyl ketal than directly from the carbonyl compound. Hydrolysis can eilso be effected by acid catalysis. [Pg.183]

Scheme 8.1. Acetals and Ketals That Exhibit General Acid Catalysis in Hydrolysis... Scheme 8.1. Acetals and Ketals That Exhibit General Acid Catalysis in Hydrolysis...
The transition state for the rapid hydrolysis of the monoanion has been depicted as involving an intramolecular general acid catalysis by the carboxylic acid group, with participation by the anionic carboxylate group, which becomes bound at the developing electrophilic center... [Pg.489]

Hydrolysis of aspirin in H2 0 leads to no incorporation of into the product salicylic acid, ruling out the anhydride as an intermediate and thereby excluding mechanism 1. The general acid catalysis of mechanism III can be ruled out on the basis of failure of other nucleophiles to show evidence for general acid catalysis by the neighboring carboxylic acid group. Because there is no reason to believe hydroxide should be special in this way, mechanism III is eliminated. Thus, mechanism II, general base catalysis of hydroxide-ion attack, is believed to be the correct description of the hydrolysis of aspirin. [Pg.491]

The acid-catalyzed hydrolysis of 2-alkoxy-2-phenyl-l,3-dioxolanes has been studied. The initial step is rate-determining under eertain eonditions and is deseribed by the rate law given below, whieh reveals general acid catalysis. [Pg.497]

Derive the general expression for the observed rate constant for hydrolysis of A as a function of pH. Assume, as is the case experimentally, that intramolecular general acid catalysis completely outweighs intermolecular catalysis by hydronium ion in the pH range of interest. Does the form of your expression agree with the pH rate profile given for this reaction in Fig. 8.6 (p. 489) ... [Pg.498]

Schollenberger added 2% of a polycarbodiimide additive to the same poly(tetra-methylene adipate) urethane with the high level of acid (AN = 3.66). After 9 weeks of 70°C water immersion, the urethane was reported to retain 84% of its original strength. Carbodiimides react quickly with residual acid to form an acyl urea, removing the acid catalysis contributing to the hydrolysis. New carbodiimides have been developed to prevent hydrolysis of polyester thermoplastics. Carbodiimides are also reported to react with residual water, which may contribute to hydrolysis when the urethane is exposed to high temperatures in an extruder [90]. [Pg.807]

Specific acid catalysis is catalysis by the hydronium ion (in water) or the lyonium ion in general. Acid-catalyzed ester hydrolysis is an example. [Pg.264]

Specific and general acid catalysis. Formulate the rate law for the acid-catalyzed hydrolysis reaction42... [Pg.250]


See other pages where Acid catalysis hydrolysis is mentioned: [Pg.205]    [Pg.44]    [Pg.681]    [Pg.358]    [Pg.311]    [Pg.202]    [Pg.295]    [Pg.271]    [Pg.453]    [Pg.455]    [Pg.475]    [Pg.477]    [Pg.488]    [Pg.493]    [Pg.502]    [Pg.152]    [Pg.681]    [Pg.104]    [Pg.299]    [Pg.163]    [Pg.204]    [Pg.209]    [Pg.248]    [Pg.367]    [Pg.110]    [Pg.969]    [Pg.156]    [Pg.169]   
See also in sourсe #XX -- [ Pg.353 , Pg.672 ]

See also in sourсe #XX -- [ Pg.353 , Pg.672 ]




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Acetals and ketals that exhibit general acid catalysis in hydrolysis

Acetic acid, cyanoethyl ester hydrolysis, metal catalysis

Acid base catalysis ester hydrolysis

Acid catalysis amide hydrolysis

Acid catalysis ester hydrolysis

Acid catalysis nitrile hydrolysis

Acid catalysis of acetal formation and hydrolysis

Acid catalysis of acetal hydrolysis

Acid catalysis of amide hydrolysis

Acid catalysis of ester formation and hydrolysis

Acid catalysis of ester hydrolysis

Acid catalysis of glycoside hydrolysis

Acid catalysis of hydrolysis

Acid catalysis of nitrile hydrolysis

Acid, definition hydrolysis, catalysis

Biomass hydrolysis acid catalysis

Butyric acid, 4-aminoethyl ester hydrolysis, metal catalysis

Catalysis hydrolysis

Ester hydrolysis Lewis acid catalysis

General acid catalysis in hydrolysis of enol ethers

Glycoside hydrolysis acid catalysis

Homogeneous acid-base catalysis hydrolysis

Hydrolysis Lewis acid catalysis

Hydrolysis specific/general acid catalysis

Intermolecular General Acid Catalysis of Glycoside Hydrolysis

Intramolecular General Acid Catalysis of Glycoside Hydrolysis

Phthalamic acid, N- hydrolysis metal catalysis

Phthalic acid hydrolysis, metal catalysis

Specific acid catalysis in acetal hydrolysis

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