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Selenosulfonates, addition

In the same manner as described before, arenesulfonyl thiocyanates are able to show self-addition to conjugated systems yielding sulfones243,244. More important, however, is that reactions of selenosulfonates with unsaturated systems as well as with nucleophilic carbon have been proved. [Pg.191]

Not only electrophilic 1,4-addition, as shown above, but also radical 1,4-addition to conjugated enynes such as selenosulfonation is known to yield acceptor-substituted allenes [118]. Finally, monotitanation of conjugated diynes followed by treatment with benzaldehyde and aqueous workup leads to an ester of penta-2,3,4-tri-enoic acid, which is formally also a product of 1,4-addition [147]. [Pg.373]

In the presence of DABCO (30 mol%), the addition of various selenosulfonates, PhSChSeAr, to a,f3-unsaturated ketones proceeds smoothly at room temperature to give the corresponding Michael adducts in good yields under mild conditions.157... [Pg.318]

Selenium-containing molecules have also been used as precursors for radical seleno group transfer reactions. This is a very powerful method for radical additions to alkenes and alkynes it is especially interesting from an atom economy point of view since all atoms remain in the product molecule. The free-radical addition of selenosulfonates 146 can be initiated either photochemically or thermally using AIBN. The addition of 146 not only to alkynes 147,255-257 km also to alkenes258-261 or allenes,261 has been reported and the products such as 148 are versatile building blocks for subsequent reactions (Scheme 39). For example, vinyl selenides 148 can be easily transformed into allenes. [Pg.477]

A large amount of woik has been accomplished using mixed sulfiir/selenium reagents, such as seleno-sulfides and selenosulfones. One example of selenosulfide addition via radicals is selenotbiolactoniza-tion. When selenosulfide (15) is treated with AIBN, a mixture of y-seleno-substituted thiolactones is produced (equation 9). Although these lactonizations result in mixtures of stereoisomers, they usually can be separated. In addition to these reports, selenosulfones have been used to form allenic sulfones, alkynic sulfones and (phenylsulfonyl)(Uenes (S< me4). ... [Pg.519]

Selenosulfonates (see also Section 3.6.2.3) add to alkenes when catalyzed by Lewis acids. These adducts are transformed via oxidative elimination to vinyl sulfones in good overall yields. Similar to other methods only trans addition is observed. Mixtures of regioisomers are often produced with unsyminetri-cal unactivated alkenes. All other alkenes (i.e. styrene and acrylonitrile) provide Maikovnikov additions. Radical processes yield anti-Markovnikov adducts. Thus, either regioisomeric vinyl sulfone may be prepared from almost any activated alkene by simply varying the mode of addition. ... [Pg.523]

The selenosulfonates (26) comprise another class of selenenyl pseudohalides. They are stable, crystalline compounds available from the reaction of selenenyl halides with sulftnate salts (Scheme 10) or more conveniently from the oxidation of either sulfonohydrazides (ArS02NHNH2) or sulftnic acids (ArS02H) with benzeneseleninic acid (27) (equations 21 and 22). Selenosulfonates add to alkenes via an electrophilic mechanism catalyzed by boron trifluoride etherate, or via a radical mechanism initiated thermally or photolytically. The two reaction modes produce complementary regioselectivity, but only the electrophilic processes are stereospecific (anti). Similar radical additions to acetylenes and allenes have been reported, with the regio- and stereochemistry as shown in Scheme 11. When these selenosulfonation reactions are used in conjunction with subsequent selenoxide eliminations or [2,3] sigmatropic rearrangements, they provide access to a variety of unsaturated sulfone products. [Pg.4322]

Selenosulfonate resin 44 has also been used in radical additions to alkynes in an approach to alkynyl sulfones (Scheme 11) [9]. Radical selenosulfonation... [Pg.101]

Selenosulfonation of Alkenes, AUenes, and Dienes. The 1,2-additions of the selenosulfonate to unsaturated substrates are... [Pg.461]

The main synthetic applications of sulfonyl radicals are based on the ability of these species to add to double and triple carbon-carbon bonds 197]. A large variety of sulfonyl radical precursors can be used including sulfonyl halides, sulfonyl cyanides, and sulfonyl thiocyanates. During the past decade the addition of selenosulfonates has been widespread. Meanwhile, the development of methodologies involving the oxidation of sulfinates has opened the way to new kinds of adducts resulting from oxidative termination. [Pg.333]

Numerous studies have been devoted to the addition of RSO2X to olefins. The propagation steps for these chain processes are shown in Scheme 13. The main factors controlling the reactivity of sulfonyl radicals are polar effects and the reversibility of the addition. Sulfonyl radicals exhibit an electrophilic character with respect to addition to olefins [98]. Evidence for the reversibility came early from the observation of the isomerization of cis- and rran -2-butenes during their copolymerization with sulfur dioxide and their Cu(I)-mediated reaction with benzenesulfonyl chloride [99]. Therefore, the chain transfer of alky] adduct radica]s has to compete effectively with -elimination of sulfonyl radicals (see Scheme 13). Selenosulfonates, sulfonyl halides, and sulfonyl cyanides are the most popular substrates that meet this property. [Pg.333]

The addition of arenesulfonyl derivatives to the double bond of vinylcyclo-propanes leads to 1,5-adducts via a ring opening of cyclopropylcarbinyl radicals. Equation (58) shows an example of copper (I)-catalyzed addition of benzenesul-fonyl chloride to poly substituted vinylcyclopropanes [117]. Similar chemistry has been observed for the addition of selenosulfonates to cyclopropylidene derivatives and cyclopropylacetylene [118]. [Pg.337]


See other pages where Selenosulfonates, addition is mentioned: [Pg.191]    [Pg.191]    [Pg.255]    [Pg.101]    [Pg.214]    [Pg.157]    [Pg.244]    [Pg.985]    [Pg.924]    [Pg.925]    [Pg.208]    [Pg.214]    [Pg.519]    [Pg.453]    [Pg.462]    [Pg.462]    [Pg.462]    [Pg.463]    [Pg.463]    [Pg.339]    [Pg.42]   
See also in sourсe #XX -- [ Pg.318 ]




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