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Amines, hydroxyethyl reaction

Hydroxyethyl)methylamino] ethyl ether groups have been introduced into cellulose by modification with bis (2-chloroethyl) methyl-amine, and reaction of 0-(2-aminoethyl) cellulose with an aqueous solution of N-[3-(dihydroxyboryl) phenyl ]succinamic acid in the presence of a water-soluble carbodiimide yields 0- N- N-[3-(dihydroxy-boryl) phenyl ]succinamoyl)aminoethyl cellulose (10), which has a variety of applications in the separation of sugars, polyhydric alcohols, and nucleic acid components. ... [Pg.324]

Reaction of cyanohydrins with absolute ethanol in the presence of HCl yields the ethyl esters of a-hydroxy acids (3). A/-substituted amides can be synthesized by heating a cyanohydrin and an amine in water. Thus formaldehyde cyanohydrin and P-hydroxyethylamine lead to A/- (P-hydroxyethyl)hydroxyacetamide (4). [Pg.411]

Ethylene oxide is a highly active intermediate. It reacts with all compounds that have a labile hydrogen such as water, alcohols, organic acids, and amines. The epoxide ring opens, and a new compound with a hydroxyethyl group is produced. The addition of a hydroxyethyl group increases the water solubility of the resulting compound. Eurther reaction of ethylene oxide produces polyethylene oxide derivatives with increased water solubility. [Pg.192]

The first of the nudeophilic ring-opening reactions of vinylaziridines discussed in this section is diborane reduction, developed by Laurent and coworkers in 1976 (Scheme 2.24). Treatment of N-unsubstituted vinylaziridines 89 with B2H6 gives allyl amines 92 by SN2 reduction via cyclic intermediates 90 [40]. In contrast, treatment with 9-BBN gives 2-(hydroxyethyl)aziridines 93 after oxidative workup (Scheme 2.25) [41]. [Pg.48]

ABA type poly(hydroxyethyl methacrylate) (HEMA) and PDMS copolymers were synthesized by the coupling reactions of preformed a,co-isocyanate terminated PDMS oligomers and amine-terminated HEMA macromonomers312). Polymerization reactions were conducted in DMF solution at 0 °C. Products were purified by precipitation in diethyl ether to remove unreacted PDMS oligomers. After dissolving in DMF/toluene mixture, copolymers were reprecipitated in methanol/water mixture to remove unreacted HEMA oligomers. Microphase separated structures were observed under transmission electron microscope, using osmium tetroxide stained thin copolymer films. [Pg.45]

Nucleophilic addition to a, -unsaturated sulfones has long been known. For example, treatment of divinyl sulfone with sodium hydroxide has been known to afford bis( -hydroxyethyl) sulfone "", while the reaction of a- and -naphthyl allyl sulfones and allyl benzyl sulfone " with alkali hydroxide or alkoxide gave -hydroxy or alkoxy derivatives. In the latter reaction, the allyl group underwent prototropy to the 1-propenyl group, which in a subsequent step underwent nucleophilic attack . Amines, alcohols and sulfides are known to add readily to a, -unsaturated sulfones, and these addition reactions have been studied widely. In this section, the addition of carbon nucleophiles to a, ji-unsaturated sulfones and the reactions of the resulting a-sulfonyl carbanions will be examined. [Pg.642]

Dobanol Ethoxy late [443], At least 16 Triton units with mass 910 were observed. A study of the reactions of amines and amine derivatives with scC02 using cSFC-MS was also reported [448], Both cSFC-APCI-MS and cSFC-ESI-MS of PEG 600 and PPG 425 were described [416]. Direct insertion probe (DIP) methodology was used for the structure analysis of the antistatic agent V,fV-bis-(2-hydroxyethyl)alkylamine. When analysed by SFC-MS coupling, the same sample could be separated into six components. The alkyl chains consist of saturated Cn, Ci4, C16 and C18 chains and of Cig chains with one double bond where 18 1 and 16 0 chains dominate. [Pg.484]

Transformations to polymer-bound amino compounds, which are often useful as ligands for metals ions or other free species (67), employ a wide selection of organic reactions. Quaternary ammonium salts result from heating isolated polymer tosylate with tertiary amine they may also be prepared in one step from (hydroxyethyl)polystyrene and toluenesulfonyl chloride and a two-fold excess of amine. [Pg.28]

Alkylation of benzotriazole with (chloromethyl)trimethoxysilane 99 provides a mixture of its derivatives 98 and 100 in a ratio of 1 3. In a reaction with tris-(2-hydroxyethyl)amine, compound 100 is converted to derivative 101 in nearly quantitative yield. Compound 98 reacts with tris-(2-hydroxyethyl)amine similarly (Scheme 6) <2003ARK(xiii) 125, 2003CHE1639>. [Pg.19]

SSRI activity is interestingly maintained even in the absence of one of the aromatic rings. Attaching the oxygen atom to an oxime leads to the antidepressant fluvoxamine. The requisite oxime (25-2) is obtained by reaction of the starting ketone (25-1) with hydroxylamine. Treatment of that intermediate with ethylene oxide adds the ether-linked side chain that will carry the amine. The hydroxyethyl product (25-3) is thus converted to its mesylate by means of methanesulfonyl chloride. This leaving group is then displaced by any one of several methods to afford the primary amine and thus fluvoxamine (25-4) [25]. [Pg.60]

Anderson et al. (1) prepared curable dental compositions consisting of the reaction products of amine-terminated polyethers, methacrylate-terminated polyethers, 2-hydroxyethyl(meth)-acrylate, and V-vinyl pyrrolidone. [Pg.435]

In the case of cationic complexes with unsaturated macrocycles two molecules of nucleophile, such as ammonia, amines and alkoxides, add to carbon atoms of two inline groups. For example, the reaction of [Ni(Bzo[16]octaeneN4)](C104)2 (Table 106) with sodium methoxide or ethoxide yields the compounds (395),2860 while with secondary amines and diamines complexes of type (396) are obtained.28 1 The reaction of (396) with acetone at room temperature yields complex (397) where the enolate anion of acetone, MeC(0)CH2, replaces the diethylamide group (Scheme 58). 2862 The addition of molecules such as bis(2-hydroxyethyl)methylamine and bis(2-hydroxyethyl) sulfide, HOCH2CH2YCH2CH2OH (Y = NMe, S) results in the formation of derivatives which possess one more coordination site just above the plane of the macrocyclic donors (398).2863... [Pg.269]

The ruthenium-catalyzed reaction of amines with bis(2-hydroxyethyl) ether or bis(2-hydroxyethyl)amines gives N-substituted morpholines or piperazines, respectively. [Pg.107]

As an organosilicon component for the reaction shown in equation 1, trial-koxysilanes are used predominantly since these are widely available. The transetherihcation of phenyltriethoxysilane and tetraethoxysilane with triethanolamine [tris(2-hydroxyethyl)amine, THEA] in the presence of the basic catalyst has led to the first silatranes (equation 2)1,32. [Pg.1450]

The reaction of phenyltris(dimethylamino)silane with bis(2-hydroxyethyl)(2-aminoeth-yl)amine affords l-phenyl-2-azasilatrane (210) in a small yield (equation 193)291. The compound is very unstable to moisture. [Pg.1523]

The enzyme mixture of 20 ml containing immobilized recombinant penicillin G amidase as the enzyme, 10% hydroxyethyl ester of 4-hydroxy-D-phenylglycine, 4% cefprozil (amine source), and 8% enzyme (immobilized recombinant penicillin G amidase, equivalent to 32 IU/ml of enzyme) was made up without buffer. The above prepared ester solution (6.9 ml) was mixed with water (2 ml) and adjusted to pH 7.5 with 10 N NH4OH. Then the amine source (0.8 g) was added to it and the pH adjusted to 7.5 with 1 N NH4OH and the volume to 18.4 ml. Then the mixture was cooled to 5-15°C and solid enzyme (1.6 g 640 IU) was added to it. The pH was not maintained at 7.5 and fell about 0.6 units during the reaction. The reaction mixture was analyzed by HPLC on a C18 Reverse Phase column. The mobile phase was 10% acetonitrile/0.3% H3P04. The isomers of cefprozil appeared at 2.9 minutes (cis) and at 5.1 minutes (trans). The final product was obtained with a maximum yield of 92-96%. The whole experiment was completed in 25-50 min. [Pg.897]


See other pages where Amines, hydroxyethyl reaction is mentioned: [Pg.177]    [Pg.149]    [Pg.404]    [Pg.181]    [Pg.642]    [Pg.380]    [Pg.134]    [Pg.138]    [Pg.175]    [Pg.518]    [Pg.117]    [Pg.70]    [Pg.423]    [Pg.1529]    [Pg.397]    [Pg.362]    [Pg.99]    [Pg.167]    [Pg.200]    [Pg.271]    [Pg.522]    [Pg.349]    [Pg.82]    [Pg.86]    [Pg.340]    [Pg.243]    [Pg.279]    [Pg.215]    [Pg.1067]    [Pg.315]    [Pg.516]    [Pg.151]    [Pg.264]   
See also in sourсe #XX -- [ Pg.206 , Pg.207 ]




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2- Hydroxyethyl amine

Hydroxyethylation

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