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Small ring synthesis

Small ring synthesis. Simmons-Smr are enantioselective in the presence of chi... [Pg.88]

Review problem 30 This may look rather difficult, but concentrate on the small ring and use the disconnection you know. Suggest a synthesis for TM 299. [Pg.97]

Lactones whose rings are three or four membered (a lactones and p lactones) are very reactive making their isolation difficult Special methods are normally required for the laboratory synthesis of small ring lactones as well as those that contain rings larger than SIX membered... [Pg.815]

Synthesis of heterocycles by forming C—X bonds by radical reactions is not a generally applicable method, and seems not to be useful for making small rings. However, the attack of thiol radicals on double bonds can be a practical synthetic route, such as in the conversion of 1-hexene-7-thiol to thiepane (Section 5.17.3.3.1). [Pg.34]

The synthesis of metal-eoordinated 1-azirines and the reaetions of azirines indueed by metals have opened a new area in the ehemistry of this small ring heteroeyele. Many of the reaetions eneountered bear resemblanee to previously diseussed thermally and photo-ehemieally indueed reaetions of 1-azirines. The reaetion of a series of diiron enneaearbonyls in benzene results in eoupling and insertion to give diimine eomplexes and ureadiiron eomplexes as well as pyrroles and ketones (76CC191). A meehanism for the formation of these produets whieh involves initial 1,3-bond eleavage and generation of a nitrene-iron earbonyl eomplex as an intermediate was proposed. [Pg.76]

Diels-Alder reactions, 4, 842 flash vapour phase pyrolysis, 4, 846 reactions with 6-dimethylaminofuKenov, 4, 844 reactions with JV,n-diphenylnitrone, 4, 841 reactions with mesitonitrile oxide, 4, 841 structure, 4, 715, 725 synthesis, 4, 725, 767-769, 930 theoretical methods, 4, 3 tricarbonyl iron complexes, 4, 847 dipole moments, 4, 716 n-directing effect, 4, 44 2,5-disubstituted synthesis, 4, 116-117 from l,3-dithiolylium-4-olates, 6, 826 electrocyclization, 4, 748-750 electron bombardment, 4, 739 electronic deformation, 4, 722-723 electronic structure, 4, 715 electrophilic substitution, 4, 43, 44, 717-719, 751 directing effects, 4, 752-753 fluorescence spectra, 4, 735-736 fluorinated derivatives, 4, 679 H NMR, 4, 731 Friedel-Crafts acylation, 4, 777 with fused six-membered heterocyclic rings, 4, 973-1036 fused small rings structure, 4, 720-721 gas phase UV spectrum, 4, 734 H NMR, 4, 7, 728-731, 939 solvent effects, 4, 730 substituent constants, 4, 731 halo... [Pg.894]

A. Goti, E. M. Corolero, and A. Brand, in Small Ring Compounds in Or-ganie Synthesis. V (A. deMeijere, ed.) [Topies in Current Chemistry, Vol. 178], p. 1. Springer-Verlag, Berlin, 1996. [Pg.280]

Mathey F (2002) In Maas G, Regitz M (eds) Science of synthesis hetarenes and related ring systems fully unsaturated small-ring heterocycles and monocyclic five-membered eetarenes with one heteroatom, vol 9. Thieme, Stuttgart, p 553... [Pg.172]

Ten years have passed since the first volume on "Small Ring Compounds in Organic Synthesis" was published within the series Topics in Current Chemistry (Vol. 133), and three more volumes have appeared in the meantime (Vol. 135, 144, 155). Wouldn t that be enough ... [Pg.8]

The authors, the editor and the publisher of this and a few more forthcoming Topics on "Small Ring Compounds in Organic Synthesis" intend to provide a service to the research community and hope that these books will generate more and fresh interest in this fascinating chemistry. [Pg.8]

Reductive and oxidative transformations of small ring compounds form the basis of a variety of versatile synthetic methods which include functionalization and carbon skeleton construction. Redox mechanisms of organotransition metal compounds play an important role in inducing or catalyzing specific reactions. Another useful route in this area is based on one-electron redox reactions. The redox tautomerism of dialkyl phosphonate also contributes to the efficiency of the reductive transformation of small ring compounds. This review summarizes selective transformations which have a high potential for chemical synthesis. [Pg.107]

This review surveys recent developments in the selective transformation of small ring compounds via redox reactions, which furnish a variety of valuable methods of synthesis. [Pg.107]

Dienones of this class are useful starting materials for the preparation of bicyclic compounds via Diels-Alder reactions1 4 and for the synthesis of small ring compounds.6 The 2,4-dienone can be converted quantitatively to the 2,5-isomer by treatment with fuming sulfuric acid and subsequent hydrolysis.6 The oxidation procedure is also applicable to the conversion of mesity-lene to mesitol or of isodurene to isodurenol,7 and can be used to convert tetramethyl ethylene quantitatively and directly to pinacolone.8... [Pg.46]

Main entry under title Small ring compounds in organic synthesis. [Pg.2]

This volume of Topics in Current Chemistry and another one, projected to appear within the next year are intended to cover most of the above-mentioned aspects of small ring chemistry, with emphasis being placed on the application in organic synthesis. State of the art reviews will be presented by individual authors who are themselves engaged in research on one or more of the subtopics. This exciting field has become so active that no single author would feel competent to write a comprehensive, up-to-date monograph. [Pg.6]

The utility of small ring conjunctive reagents in total syntheses appears to be very great. The convulated structural correlations between the target and a starting material hamper its ready adaptation. The facility and stereochemical implications make the rethinking of retrosynthetie analysis well worth the effort. To illustrate some of this potential, several applications in the total synthesis of natural and unnatural products are analyzed. [Pg.68]


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See also in sourсe #XX -- [ Pg.89 ]




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