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Ester-based

The yield of ester based on the ethanol taken is actually higher than the above value, as the rectified spirit used contains only 96% of ethanol.)... [Pg.99]

Plasticizers. About 2.5% of U.S. adipic acid consumed in 1988 was used in two basic types of adipic ester based plasticizers (195). Simple adipate esters prepared from Cg—alcohols are used especially as PVC plasticizers (qv). Eor special appHcations requiring low volatility or extraction resistance, polyester derivatives of diols or polyols are preferred. [Pg.247]

Photoresist appHcations in the microelectronics industry have also been disclosed (340). Thermally stable ben2yl sulfonate esters based on 2-methyl-3-nitroben2otrifluoride [6656-49-1] can serve as nonionic photoacid generators to promote a cascade of reactions during irradiation of the resist. [Pg.333]

Liquid crystal appHcations include esters based on m- or -hydroxyben2otrifluoride (341,342), hydroxytrifluoromethylbiphenyls (343) or hydroxytrifluoromethylphenyl Schiff bases (344). [Pg.333]

Plasticizer molecules can undergo thermal degradation at high temperatures. Esters based on the more branched alcohol isomers are more susceptible to such degradation. This can, however, be offset by the incorporation of an antioxidant, and plasticizer esters for cable appHcations frequently contain a small amount of an antioxidant such as bisphenol A. [Pg.126]

Optically Active Alcohols and Esters. In addition to the hydrolysis of esters formed by simple alcohols described above, Hpases and esterases also catalyze the hydrolysis of a wide range of esters based on more complex and synthetically useful cycHc and acycHc alcohols (Table 5). Although the hydrolysis of acetates often gives the desirable resolution, to achieve maximum selectivity and reaction efficiency, comparison of various esters is recommended. [Pg.338]

Esters based on trimellitic anhydride, the trimellitates, have become very popular primary plasticisers for use at high temperatures or where a high level of resistance to aqueous extraction is required. Because of their frequency of use at elevated temperatures, they are usually supplied commercially containing an antioxidant. [Pg.333]

Both the dipolymers and terpolymers have excellent resistance to hydrocarbons found m petroleum-based fuels and lubricants The 69 5% F terpolymer resists swellmg m blended fuels that contain metlianol and can be used in contact with certain phosphate ester-based hydraulic fluids Terpolymers are preferred for contact with aromatic solvents, although either type performs well in higher alcohols VDF-based elastomers dissolve m polar aprotic solvents such as ketones, esters, amides, and certam ethers These elastomers are therefore not suitable for contact with fluids that contain substantial amounts of these solvents because of excessive swell and consequent loss of mechanical properties... [Pg.1113]

An alternative purification can be effected by dissolving the reaction product in water. The ester base is liberated by rendering the clarified aqueous solution alkaline. Removal of the base from the alkaline solution is achieved by extraction with a Suitable solvent such as benzene or ether. The pure hydrochloride of diethylaminoethyl 2-chloro-4-aminobenzoate Is then precipitated from the dried extract by the addition of dry hydrogen chloride. After removal by filtration and recrystallization from ethanol it is found to have a melting point of 173° to 174°C. [Pg.311]

A mixture containing 8 g (0.06 mol) of N-methyl-3-chloro-piperidine and 13.6 g (0.06 mol) of benzilic acid in 50 cc of anhydrous isopropyl alcohol was refluxed for 3 days the isopropyl alcohol was removed by distillation in vacuo, the residue treated with dilute aqueous hydrochloric acid and the aqueous acid mixture extracted repeatedly with ether. The aqueous phase was separated, made strongly alkaline with 20% aqueous sodium hydroxide and extracted with ether. The ether extracts were dried with potassium carbonate and distilled the product was collected at 175° to 176°C (0.03 mm), yield 11.5 g (59%). The ester base thus prepared was then dissolved in 75 cc of isopropyl alcohol and 3.4 g (0.037 mol) methyl bromide added. The reaction mixture was allowed to stand at 30°C for 2 days and the product isolated by filtration, yield, 13 g (87%), MP 228° to 229°C dec. [Pg.931]

Phosphoric acid esters based on alkylene oxide adducts are of great interest. Their properties can be altered by the length and structure of the hydrophobic alkyl chain. But they are also controlled by the kind and length of the hydrophilic alkyleneoxide chain. The latter can easily be tailored by selection between ethylene oxide and propylene oxide and by the degree of alkoxylation. [Pg.560]

Because polarity is a dominant factor in solubility, phosphorus-containing anionic surfactants can be tested by solving them in a line of different liquids, e.g., heptane, toluene, propanone-2, ethanol, and water. From the behavior in those liquids the surfactants can be classified for an overall view on the solubility of phosphoric acid esters based on alcohols and ethoxylated alcohols in different surroundings. [Pg.591]

Synthesis and characterization of ABA type copolymers containing polydimethyl-siloxane or poly(trifluoropropyl,methyl)siloxane middle blocks and aromatic ester based liquid crystalline end blocks were reported 252,253). These materials were synthesized in solution by the reaction of primary or secondary amine-terminated, di-... [Pg.45]

CN (2a,6a,8a,9aa)-l/7-Indole-3-carboxylic acid octahydro-3-oxo-2,6-methano-2/f-quinolizin-8-yl ester base... [Pg.700]

Esterification of tertiary alcohols poses several problems and expensive catalysts, like dimethylamino pyridine, are recommended. While esterification/transesterification/hydrolysis involving primary and secondary alcohols has been reported both with chemocatalysts and biocatalysts, terf-alcohol based esters have not found success. Recent work of Yeo et al. (1998) reports successful results for /er/-butyl octonoate using a new strain of lipase. This is a significant finding as the production of esters based on fert-alcohols (and reciprocally with hindered acids) may well be possible with biocatalysts, avoiding expensive catalysts and allowing easier separation. [Pg.159]

Several ester-based oils are suitable as lubricants [532,690], as are branched chain carboxylic esters [1588]. Tall oils can be transesterified with glycols [1536] or condensed with monoethanolamine [51]. [Pg.15]

A. M. Durr, Jr., J. Huycke, H. L. Jackson, B. J. Hardy, and K. W. Smith. An ester base oil for lubricant compounds and process of making an ester base oil from an organic reaction by-product. Patent EP 606553, 1994. [Pg.383]

In the sections that follow, the data needs issues for the mineral oil and polyalphaolefin hydraulic fluids will be discussed first. This will be followed in each section by a discussion of issues regarding organophosphate ester-based products. [Pg.313]

Mineral Oil Hydraulic Fluids and Polyalphaolefin Hydraulic Fluids. No literature was identified dealing with the bioavailability of chemicals in this category of hydraulic fluids. Because of this wide variation and the lack of any information in mammalian species, it is difficult to estimate bioavailability to humans. Additional research on the bioavailability of this category of hydraulic fluids would be valuable but may not be as high a priority as research on bioavailability issues for the phosphate ester-based hydraulic fluids. [Pg.316]

Si element ATR-FTIR spectroscopy was used to analyze this residue, and its spectrum, along with the closest library matches, are shown in Figure 41. The absorbance of this residue is low as a consequence of the thin layer present on the plate. This makes matching the sample spectrum with a reference spectrum somewhat difficult. The closest matches extracted from the library interrogated are to ester-based plasticizer materials, which is consistent with a phthalate-plasticized PVC. A more specific identification could have been made with further testing such as subjecting the residue to GC-MS analysis, but the information suggested by the ATR-FTIR analysis was, in this case sufficient. [Pg.646]

The slow water removal is obvious within the synthesis of, for example, myristyl myristate determining the total reaction time. In a stirred-tank reactor it takes 24 h to reach a conversion of 99.6% and in a fixed-bed reactor 14 h. Therefore, a new synthesis platform (Figure 4.11) which also enables conversion of highly viscous polyols and fatty acids from renewable resources to ester-based surfactants was designed. It is used by Evonik on a pilot scale, outperforming conventional methods, such as stirred-tank or fixed-bed reactors. In contrast to the setups introduced before, conversion of >99.6% is already obtained after 5.5 h in the bubble column reactor [44-47]. [Pg.90]

In 1992, Thornton et al. reported that Mn(salen) (43) catalyzed the asymmetric oxidation of silyl enol ethers to give a mixture of a-siloxy and a-hydroxy ketones, albeit with moderate enantioselectivity (Scheme 28).135 Jacobsen et al. examined the oxidation of enol esters with Mn(salen) (27) and achieved good enantioselectivity.136 Adam et al. also reported that the oxidation of enol ethers with (27) proceeded with moderate to high enantioselectivity.137 Good substrates for these reactions are limited, however, to conjugated enol ethers and esters. Based on the analysis of the stereochemistry,137 enol ethers have been proposed to approach the oxo-Mn center along the N—Mn bond axis (trajectory c, vide supra). [Pg.226]

High resistance to almost all inorganic chemicals, ammonia being the most important exception. Resistance to most organic compounds, except low molecular weight polar organics. Least resistant of the fluorocarbon rubbers to methanol and phosphate ester based hydraulic fluids. [Pg.113]

The use of tartrates as chiral auxiliaries in asymmetric reactions of allenyl bor-onic acid was first reported by Haruta et al.69 in 1982. However, it was not for several years that Roush et al.,70 after extensive study, achieved excellent results in the asymmetric aldol reactions induced by a new class of tartrate ester based allyl boronates. [Pg.168]

Recently, nonionic acid precursors based on nitrobenzyl ester photochemistry have been developed for chemically amplified resist processes (78-80). These ester based materials (Figure 8) exhibit a number of advantages over the onium salt systems. Specifically, the esters are easily synthesized, are soluble in a variety organic solvents, are nonionic in character, and contain no potential device contaminants such as arsenic or antimony. In addition, their absorption characteristics are well suited for deep-UV exposure. [Pg.13]

Do not use ester-based antiredeposition agents for applications under high temperature or alkaline conditions, since they will hydrolyze. [Pg.254]

Ester Solvent Ester Base Temp. /°C Time /h Conversion /% k 2 /M- s-1... [Pg.338]

W Williams, GT Young. Amino acids and peptides. XXXV. Effect of solvent on the rates of racemization and coupling of acylamino acid p-nitrophenyl esters. Base strengths of amines in organic solvents, and related investigations. J Chem Soc Perkin Trans 1 1194, 1972. [Pg.108]


See other pages where Ester-based is mentioned: [Pg.128]    [Pg.68]    [Pg.163]    [Pg.339]    [Pg.333]    [Pg.942]    [Pg.603]    [Pg.7]    [Pg.15]    [Pg.266]    [Pg.24]    [Pg.29]    [Pg.1004]    [Pg.244]    [Pg.250]    [Pg.374]    [Pg.83]    [Pg.34]    [Pg.9]    [Pg.119]    [Pg.465]    [Pg.465]   
See also in sourсe #XX -- [ Pg.45 , Pg.46 , Pg.48 ]




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Acid base catalysis ester hydrolysis

Acid-base chemistry esters

Active esters base catalyzed transesterification

Amide bases reaction with esters

Amino acid esters Schiff bases

Asymmetric Monoalkylation of Glycine Ester Schiff Bases

Asymmetric glycine ester Schiff bases

Base catalysis ester hydrolysis

Base catalysis of ester hydrolysis

Base catalysis, general, of ester hydrolysis and

Base catalysis, general, of ester hydrolysis and related reactions

Base hydrolysis amino acid esters

Base hydrolysis of esters

Base-Promoted Hydrolysis of an Ester

Base-catalyzed hydrolysis of esters

Base-free ester aminolysis

Base-induced rearrangement esters

Base-labile carboxylic esters

Base-labile ester linkers

Bases. esters

Bases. esters

Bisphenol A-based cyanate ester

Carbonate ester based polymers

Carboxylic acid esters base-catalyzed hydrolysis

Carboxylic acids and esters as bases

Carboxylic esters, base

Carboxylic esters, base alcohols

Carboxylic esters, base basic hydrolysis

Carboxylic esters, base catalyzed condensation

Carboxylic esters, base cleavage

Carboxylic esters, base condensation, with aldehydes

Carboxylic esters, base halides

Distinction between acid and base hydrolyses of esters

Ester Hydrolysis in Base Saponification

Ester base free

Ester base-promoted

Ester group transfer, base-catalyzed

Ester hydrolysis base-catalysed

Ester hydrolysis base-promote

Ester hydrolysis, general base and

Ester hydrolysis, general base and nucleophilic catalysis

Ester hydrolysis, general base and nucleophitic catalysis

Ester-, Amide- and Carbamate-Based Linkers

Ester-based TPU

Ester-based cascade

Ester-based compounds

Ester-based pseudo poly

Ester-protected poly based resists

Esters base-catalysed

Esters base-catalyzed condensation with ketones

Esters base-catalyzed hydrolysis

Esters base-induced ester hydrolysis

Esters general base catalysis

Esters general base-catalysed

Esters hydrolysis using aqueous base

Esters hydrolysis, base promoted

Esters hydrolysis, base-mediated

Esters reaction with base

Esters specific acid/base catalysis

Esters, acid hydrolysis bases

Esters, sulfonate elimination with base

Esters, sulfonate reaction with bases

Fat Substitutes Based on Esters and Ethers

Highly aromatic ester-based main-chain

Imidization, base catalyzed amide alkyl esters

Mannich bases acid ester

Mechanism base-catalyzed ester hydrolysis

Methacrylate ester-based monolithic columns

Processing oils ester-based

Rate constant, base hydrolysis esters

Recommended Glycerol Ester Based Additives for Polyolefins

Resist ester-protected poly based

Schiff bases, reaction with ester enolates

Sugar based polymers ester

Tosylethyl Esters and Related Base-Labile Groups

Transesterification with ester-bases

Vinyl ester-based composites

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