2016
DOI: 10.1039/c6ob01054g
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Iodine-mediated synthesis of heterocycles via electrophilic cyclization of alkynes

Abstract: Iodine has been recognized as an efficient, non-toxic, readily available and easy-to-handle electrophilic reagent to favour halocyclization reactions for the synthesis of novel iodofunctionalized heterocyclic molecules that serve as versatile intermediates in synthetic organic chemistry. This review presents numerous useful methodologies for the synthesis of O, N, S, and Se-heterocycles through electrophilic cyclization via the attack of an electrophile on the C(sp) bond of alkynes. The cyclization proceeds un… Show more

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Cited by 121 publications
(39 citation statements)
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“…Selenium has been recognized as an efficient, non-toxic, readily available and easy-to-handle electrophilic reagent that favors alkyne cyclization reactions for the synthesis of novel seleno-functionalized heterocyclic molecules that in turn serves as versatile intermediates in synthetic organic chemistry. [1][2][3][4][5][6][7][8][9][10][11][12][13][14][15] This review involves numerous useful methods for the synthesis of selenated O, N, C, S, Se, and Te heterocycles through electrophilic cyclization via attack of an electrophilic source to the C (sp) bond of alkyne to generate seleno-heterocycles. The electrophilic cyclization can proceed not only at higher temperature conditions but also under mild reaction conditions and tolerated a wide variety of functional groups.…”
Section: Introductionmentioning
confidence: 99%
“…Selenium has been recognized as an efficient, non-toxic, readily available and easy-to-handle electrophilic reagent that favors alkyne cyclization reactions for the synthesis of novel seleno-functionalized heterocyclic molecules that in turn serves as versatile intermediates in synthetic organic chemistry. [1][2][3][4][5][6][7][8][9][10][11][12][13][14][15] This review involves numerous useful methods for the synthesis of selenated O, N, C, S, Se, and Te heterocycles through electrophilic cyclization via attack of an electrophilic source to the C (sp) bond of alkyne to generate seleno-heterocycles. The electrophilic cyclization can proceed not only at higher temperature conditions but also under mild reaction conditions and tolerated a wide variety of functional groups.…”
Section: Introductionmentioning
confidence: 99%
“…In the latter half of the 20 th century, the halolactonizations of olefinic acids and amides, and the haloetherifications of olefinic alcohols were frequently reported [4][5][6][7]. However, in the 21 st century, there have been significant developments in halogen chemistry, as halogens have been determined to contribute to the control of high selectivities for the cyclization reactions [8][9][10][11][12][13][14][15][16][17][18][19][20]. In modern halogen chemistry, halogen-controlled reaction strategies that can contribute toward selective transformations have thus become an important issue and are of interest in organic synthesis.…”
Section: Introductionmentioning
confidence: 99%
“…Not surprisingly,f or the past decades, molecular iodine has been successfully utilized as ac atalysta nd reagent for various organic transformations. [1m, [14][15][16][17][18] One of the recent achievementsi nt he area of CDC reactions is the use of the catalytic activity of I 2 for the formation of CÀC and CÀHet bonds in organic compounds.T his review focuses on I 2 -catalyzed CDC reactions with as pecial emphasis on reac-tion mechanisms, and it is classified according to the type of bond formation,t hat is, CÀCb ond-forming reactions, CÀN bond-forming reactions, CÀOb ond-forming reactions, and CÀ S/CÀSe bond-formingr eactions On the basis of the role of I 2 ,c ross-dehydrogenativec oupling reactions( C ÀC, CÀN, CÀO, and CÀS/CÀSe bond-forming reactions) are furthers ubclassified into a-carbon activation (bond adjacentt oC =O, heteroatom, or aryl) to form aC ÀI bond as ak ey intermediate (Scheme 2), I 2 as ar adical initiator to decompose peroxides (Scheme 3), and heteroatom activation to form aHetÀIb ond as ak ey intermediate (Scheme 4).…”
Section: Introductionmentioning
confidence: 99%
“…Another distinctive character of I 2 is its high catalytic activity in dilute solutions, in highly concentrated solutions, and under solvent‐free conditions. Not surprisingly, for the past decades, molecular iodine has been successfully utilized as a catalyst and reagent for various organic transformations …”
Section: Introductionmentioning
confidence: 99%