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Stability sulfur stabilized reagents

Sulfation is defined as any process of introducing an SO group into an organic compound to produce the characteristic C—OSO configuration. Typically, sulfation of alcohols utilizes chlorosulfuric acid or sulfur trioxide reagents. Unlike the sulfonates, which show remarkable stability even after prolonged heat, sulfated products are unstable toward acid hydrolysis. Hence, alcohol sulfuric esters are immediately neutralized after sulfation in order to preserve a high sulfation yield. [Pg.74]

D. Dichromate-Sulfuric Acid Reagent is prepd by dissolving 0.5g of K2Cr207 in 100ml of 60% sulfuric acid. It was proposed by Oven-ston for use in chromatographic analysis of propints, for the location of substituted ureas and urethanes which have been employed as stabilizers and plasticizers(Ref 18a)... [Pg.188]

Whereas the reactions of sulfones with nucleophiles via pathways A and B of equation 1 are most frequently observed, the nucleophilic substitution reaction by pathway D has been observed only in the cases where the leaving carbanion can be stabilized, or in the highly strained molecules. Chou and Chang3 has found recently that an organolithium reagent attacks the sulfur atom of the strained four-membered sulfone in 34. When this sulfone is treated with 1 equivalent methyllithium, followed by workup with water or Mel, 38 or 39 are formed in high yield. [Pg.768]

Part C of the present procedure illustrates a mild method for effecting the elimination of thiophenol from thioacetals and thioketals under essentially neutral conditions. The reaction of simple thioacetals and thioketals with bis[copper(I) trifluoro-methanesulfonate] benzene complex in benzene-tetrahydrofuran at room temperature affords vinyl sulfides in high yield (Table I). The reaction presumably occurs by coordination of the thiophilic copper(I) reagent with sulfur, heterolysis to a phenylthio-stabilized... [Pg.105]

Sulfur compounds are useful as nucleophilic acyl equivalents. The most common reagents of this type are 1,3-dithianes, which on lithiation provide a nucleophilic acyl equivalent. In dithianes an umpolung is achieved on the basis of the carbanion-stabilizing ability of the sulfur substituents. The lithio derivative is a reactive nucleophile toward alkyl halides and carbonyl compounds. 11... [Pg.1168]

Important aspects of the coordination chemistry of binary chalcogen-nitrogen ligands include (a) the ability of metals to stabilize labile neutral and anionic binary S-N ligands, (b) the applications of metal complexes as reagents for the preparation of other S-N compounds, and (c) the possible incorporation of metals into sulfur-nitrogen chains to produce conducting materials. [Pg.235]

The metal and ammonium salts of dithiophosphinic acids tend to exhibit far greater stability with respect to this thermal decomposition reaction, and consequently these acids are often prepared directly in their salt form for convenience and ease of handling. Alkali-metal dithiophosphinates are accessible from the reaction of diphosphine disulfides with alkali-metal sulfides (Equation 22) or from the reaction of alkali-metal diorganophosphides with two equivalents of elemental sulfur (Equation 23). Alternatively, they can be prepared directly from the parent dithiophosphinic acid on treatment with an alkali-metal hydroxide or alkali-metal organo reagent. Reaction of secondary phosphines with elemental sulfur in dilute ammonia solution gives the dithiophosphinic acid ammonium salts (Equation 24). [Pg.298]

The reaction of (trialkylsilyl)vinylketenes with nucleophilic carbenoid reagents, such as sulfur ylides and diazo compounds, has been used for synthesis of substituted cyclopentenones by stereoselective 4 + 1-annulation (Scheme 12). The strategy relies on the remarkable ability of silyl substituents to stabilize ketenes and suppress their tendency to undergo dimerization and 2 - - 2-cycloaddition. [Pg.381]


See other pages where Stability sulfur stabilized reagents is mentioned: [Pg.74]    [Pg.114]    [Pg.1565]    [Pg.239]    [Pg.357]    [Pg.1]    [Pg.32]    [Pg.953]    [Pg.2]    [Pg.122]    [Pg.43]    [Pg.56]    [Pg.71]    [Pg.95]    [Pg.830]    [Pg.236]    [Pg.259]    [Pg.56]    [Pg.141]    [Pg.519]    [Pg.95]    [Pg.539]    [Pg.67]    [Pg.195]    [Pg.170]    [Pg.103]    [Pg.114]    [Pg.269]    [Pg.9]    [Pg.43]    [Pg.743]    [Pg.307]    [Pg.36]    [Pg.78]    [Pg.315]    [Pg.57]    [Pg.18]   
See also in sourсe #XX -- [ Pg.10 , Pg.11 , Pg.12 , Pg.13 , Pg.1199 , Pg.1200 ]




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Reagent stability

Stabilizing reagents

Sulfur Reagents

Sulfur stability

Sulfur-stabilized

Sulfur-stabilized reagents

Sulfur-stabilized reagents

Sulfurization reagents

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