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Trimethylsilyl deriv

Similar halogenations have been done on 2-lithio-l-phenylsulfonylindole[2], 2-Lithio-l-phenylsulfonylindole is readily converted to the 2-(trimethylsilyl) derivative[2,3]. 2-Trialkylstannylindoles can also be prepared via 2-lithio-indoles[4,5], 2-Sulfonamido groups can be introduced by reaction of a 2-lithioindole with sulfur dioxide, followed by conversion of the sulfinic acid group to the sulfonyl chloride with A-chlorosuccinimide[6]. [Pg.102]

Etherification. The reaction of alkyl haUdes with sugar polyols in the presence of aqueous alkaline reagents generally results in partial etherification. Thus, a tetraaHyl ether is formed on reaction of D-mannitol with aHyl bromide in the presence of 20% sodium hydroxide at 75°C (124). Treatment of this partial ether with metallic sodium to form an alcoholate, followed by reaction with additional aHyl bromide, leads to hexaaHyl D-mannitol (125). Complete methylation of D-mannitol occurs, however, by the action of dimethyl sulfate and sodium hydroxide (126). A mixture of tetra- and pentabutyloxymethyl ethers of D-mannitol results from the action of butyl chloromethyl ether (127). Completely substituted trimethylsilyl derivatives of polyols, distillable in vacuo, are prepared by interaction with trim ethyl chi oro s il an e in the presence of pyridine (128). Hexavinylmannitol is obtained from D-mannitol and acetylene at 25.31 MPa (250 atm) and 160°C (129). [Pg.51]

Conversion to acetates, trifluoroacetates (178), butyl boronates (179) trimethylsilyl derivatives, or cycHc acetals offers a means both for identifying individual compounds and for separating mixtures of polyols, chiefly by gas—Hquid chromatography (glc). Thus, sorbitol in bakery products is converted to the hexaacetate, separated, and determined by glc using a flame ionisation detector (180) aqueous solutions of sorbitol and mannitol are similarly separated and determined (181). Sorbitol may be identified by formation of its monobensylidene derivative (182) and mannitol by conversion to its hexaacetate (183). [Pg.52]

In the case of indazoles the reaction of indazole, 5-nitroindazole or 6-nitroindazole with glycosyl halides and mercury(n) cyanide gives exclusively 2-glycosylindazoles (670), (673) and (675) (7QJHC1435). Similarly, the reaction of 1-trimethylsilyl derivatives of indazole, 3-cyanoindazole, 4-nitroindazole, 5-nitroindazole and 6-nitroindazole with 2,3,5-tri-O-acetyl-D-ribofuranosyl bromide gives only, or preferentially, the 2-ribofuranosyl derivatives (670)-(674) 7QJHC117, 70JHC1329). [Pg.289]

Me3SiNHS020SiMe3, CH2CI2, 30°, 0.5 h, 92-98% yield. Higher yields of trimethylsilyl derivatives are realized by reaction of aliphatic, aromatic, and carboxylic hydroxyl groups with A, <9-bis(trimethylsilyl)sulfamate than by reaction with N,<9-bis(trimethylsilyl)acetamide. ... [Pg.70]

The irradiation of 2-trimethylsilylfuran (29) gave the corresponding ring-opening product 30 in 68% yield (Scheme 12) (83JA6316). Other trimethylsilyl derivatives showed the same behavior (Scheme 12). The allene 32, obtained starting from the furan 31, can be thermally converted into 2,4-ditrimethylsilylfuran (33). [Pg.50]

In recent years, trimethylsilyl protection has often been used for the methine proton of the acetylenic group because of the mild reaction conditions for desilylation. As a rule, the starting pyrazole trimethylsilyl derivative is mixed up, at room temperature, with a 2 A aqueous solution of NaOH, potash, or methanol solution in ammonia. [Pg.47]

DETERMINATION OF SUCROSE AS ITS TRIMETHYLSILYL DERIVATIVE USING GAS-LIQUID CHROMATOGRAPHY... [Pg.250]

For further conversions via the titanium derivative see Section D.l. 3.3.3.8.2.3. The complex of the trimethylsilyl derivative was subjected to an X-ray structure analysis6. [Pg.239]

O- and N-containing heterocyclic compounds Characteristic rearrangement ion of butyrates except methyl Dinitrotoluenes Trimethylsilyl derivatives... [Pg.147]

Double rearrangement of protonated carboxylic acids Trimethylsilyl derivatives [CH2OSi(CH3)3]... [Pg.340]

Hydrochloric acid in anhydrous methanol (1 4 volume ratio) has been used to desilylate the trimethylsilyl derivatives of ferrocene, ruthenocene, and os-mocene, the rate coefficients (lO5 ) being ferrocene (5.60, 4.08), ruthenocene (261, 182), and osmocene (104, 80.2) for 0.596 M and 0.477 M hydrochloric acid, respectively, (temperature not quoted)690. [Pg.339]

The alkyl chain distribution of the base alcohol in alcohol sulfates is easily determined by gas chromatography. However, alcohol sulfates and alcohol ether sulfates are not volatile and require a previous hydrolysis to yield the free alcohol. The extracted free alcohol can be injected directly [306] or converted to its trimethylsilyl derivative before injection [307]. Alternatively, the alcohol sulfate can be decomposed by hydroiodic acid to yield the alkyl iodides of the starting alcohols [308]. A preferred method forms the alkyl iodides after hydrolysis of the alcohol sulfate which are analyzed after further extraction of the free alcohol, thus avoiding the formation of hydrogen sulfide. This latter method is commonly used to determine the alkyl chain distribution of alcohol ether sulfates. [Pg.285]

Structural Identification of Isomeric O-Trimethylsilyl Derivatives of Some Hexuronic Acids, J. F. Kennedy, S. M. Robertson, and M. Stacey, Carbohydr. Res., 57 (1977) 205-214. [Pg.41]

The cyclisation of naphthyl propargyl ethers occurs efficiently under microwave irradiation leading to naphthopyrans, but naphthofurans are formed in the presence of base <96JCR(S)338>. The thermal rearrangement of naphthyl 3-trimethylsilylprop-2-ynyl ethers yields the 4-trimethylsilyl derivatives of naphthopyrans <96H(43)751>. [Pg.292]

Other compounds identified in caramels are di-D-fructose and poly(glycosyl) dianhydrides (DFAs). DFAs were found in caramels prepared from D-fructose, D-glucose, and sucrose. The analysis was done after derivatization as TMS (per-0-trimethylsilyl) derivatives or as TMS-oxime (per-O-trimethylsilyl oxime) by... [Pg.337]

As an alternative, Harpp and coworkers reacted benzenesulfinyl chloride with the trimethylsilyl derivative of menthol to form the diastereomeric esters in 91% yield the epimer of configuration R could be isolated by crystallization in unspecified yield. Grossert and coworkers prepared ester 19 in 51% yield as a mixture of diastereomers by treating p-toluenesulfonyl chloride with sodium p-toluenesulfinate in DMF containing menthol. It was postulated that initial nucleophilic attack by the sulfinate oxygen on the sulfonyl sulfur atom gave the mixed sulfonate-sulfinate anhydride 21, which then reacted... [Pg.61]


See other pages where Trimethylsilyl deriv is mentioned: [Pg.203]    [Pg.5]    [Pg.10]    [Pg.421]    [Pg.297]    [Pg.81]    [Pg.633]    [Pg.106]    [Pg.107]    [Pg.108]    [Pg.217]    [Pg.232]    [Pg.242]    [Pg.628]    [Pg.20]    [Pg.37]    [Pg.143]    [Pg.179]    [Pg.317]    [Pg.61]    [Pg.440]    [Pg.40]    [Pg.196]    [Pg.50]    [Pg.374]    [Pg.14]    [Pg.15]    [Pg.68]    [Pg.176]    [Pg.288]   
See also in sourсe #XX -- [ Pg.22 ]




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Adamantane derivatives trimethylsilyl derivative

Aldonic acids trimethylsilyl derivatives

Bile acid methyl ester-trimethylsilyl ether derivatives

Carbohydrates trimethylsilyl derivative

Derivative of trimethylsilyl

Determination of sucrose as its trimethylsilyl derivative using gas-liquid chromatography

Disaccharides trimethylsilyl derivatives

Erythrose, trimethylsilyl derivatives

Fluoride Ion Induced Peterson-Type Reactions of Bis(trimethylsilyl)methane Derivatives

Hexoses trimethylsilyl derivatives

Hydroxy acids, trimethylsilyl derivatives

Mass spectrometry trimethylsilyl derivatives

Phenolic acids, trimethylsilyl derivative

Radical cyclization, with trimethylsilyl derivatives

Steroids, trimethylsilyl derivatives

Trimethylsilyl (TMS) Derivatives

Trimethylsilyl acetylene derivatives, with

Trimethylsilyl deriv applications

Trimethylsilyl deriv donor

Trimethylsilyl deriv esters

Trimethylsilyl deriv high volatility

Trimethylsilyl deriv most general silyl

Trimethylsilyl deriv problems with enols

Trimethylsilyl derivative in nucleosides synthesis

Trimethylsilyl derivatives

Trimethylsilyl derivatives

Trimethylsilyl derivatives mass spectra

Trimethylsilyl derivatives of alcohols

Trimethylsilyl ether derivatives

Trimethylsilyl)ethylsulfonyl (SES) Derivatives

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