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Thiophene synthesis chemistry

In this chapter we will first discuss the synthesis, chemistry and physical properties of silicon-containing thiophene monomers, oligomers and polymers. We will first summarize the synthesis of silylated thiophene derivatives. The use of selective silylation reactions allows the design of thiophene monomers and oligomers with various structural features. Some of the properties of these new conjugated structures will be discussed. [Pg.626]

The methods for de novo thiophene ring synthesis described in this chapter, many of which have been known for some time, continue to dominate the field. No doubt there will be future innovations, but the range of substituted thiophenes which can already be readily produced by these known methods, taken with the well-developed substitution chemistry of thiophenes (Chapter 3, Thiophene Substitution Chemistry), makes accessing any desired thiophene-containing compound a relatively well-developed art. [Pg.38]

Brooke GM, Mawson SD (1990) Partially fluorinated heterocyclic compounds. Part 27. The synthesis of 4,5,6,7-tetrafluorobenzo[c]thiophene and 4,5,6,7,8,9-hexafluoronaphtho[l,2-c] thiophene some chemistry and electrochemistry. J Chem Soc Perkin Trans 1 1919-1923... [Pg.276]

Thiophene [110-02-1] and a number of its derivatives are significant in fine chemical industries as intermediates to many products for pharmaceutical, agrochemical, dyestuffs, and electronic appHcations. This article concentrates on the industrial, commercial, and economic aspects of the production and apphcations of thiophene and thiophene derivatives and details the main synthetic schemes to the parent ring system and simple alkyl and aryl derivatives. Functionalization of the ring and the synthesis of some functional derivatives that result, not from the parent ring system, but by direct ring cyclization reactions are also considered. Many good reviews on the chemistry of thiophene and thiophene derivatives are available (1 7). [Pg.17]

In the development of thiophene chemistry three periods can be clearly distinguished the Victor Meyer era, the Steinkopf period, and the modem development starting with the discovery of the synthesis of thiophene from butane and sulfur, making thiophene potentially available in unlimited amounts. Hartough in his well-known monograph, has reviewed the intense and hectic thiophene research toward the end of the 1940 s carried out mainly at the Socony-Vacuum laboratories, but also at many academic institutions. An article by Nord et al. appeared in 1955 in which the research work in thiophene chemistry at Fordham University, as well as progress in general up to 1954, was reviewed. [Pg.2]

Replacement of a benzene ring by its isostere, thiophene, is one of the more venerable practices in medicinal chemistry. Application of this stratagem to the NSAID piroxicam, gives tenoxicam, 136, a drug with substantially the same activity, nie synthesis of this compound starts by a multi-step conversion of hydroxy thiophene carboxylic ester 130, to the sulfonyl chloride 133. Reaction of that with N-methylglycinc ethyl ester, gives the sulfonamide 134. Base-catalyzed Claisen type condensation serves to cyclize that intermediate to the p-keto ester 135 (shown as the enol tautomer). The final product tenoxicam (136) is obtained by heating the ester with 2-aminopyridine [22]. [Pg.173]

The enormous literature of five-membered ring systems containing sulfur primarily describes the synthesis, properties and chemistry of thiophene and its derivatives279. [Pg.458]

Benzothiophenes have always been of interest for medicinal chemistry and can be found in a number of marketed drugs such as Sertaconazole (Gineder-mofix), Zileuton (Leutrol) and Raloxifene (Evista). The classical synthesis of benzo thiophenes starts from thiophenols, reacting with bromoacetaldehyde dimethyl acetal, followed by cycUzation using strong acid. An alternative and more convenient route was also described starting from benzaldehydes which... [Pg.62]

Despite that the thiophene ring is considered as a bioisoster of the benzene ring, the synthesis and chemistry of thiophene analogs of heterocycles with therapeutic interest remain poorly studied. One of the most recent examples concerns the synthesis of new substituted thioisatoic anhydrides (6 and 7-arylthieno[3,2-d] [1,3]oxazine-2,4-diones), which were prepared on a large scale under microwave irradiation conditions. A small library of thiophene ureidoacids was easily performed using a Normatron microwave reactor (500 W) with high yields and good purity [4,5] (Scheme 4). [Pg.63]

A New Improved Synthesis of Tricycle Thienobenzazepines Apphcation of chemistry recently developed by Knochel" combined with the well-described halogen dance (HD) reaction, allowed preparation of our key intermediate A in only three synthetic transformations (Scheme 6.4). In this respect, treatment of 2-bromo-5-methylthiophene with hthium diisopropylamide followed by dimethylformamide afforded aldehyde 11 in good yield, lodo-magnesium exchange with conunercial 4-iodo-3-nitro anisole followed by reaction with 11 afforded the thiophene catbinol 12. Dehydroxylation of 12 provided our key intermediate A which presented the requisite functionality to examine our approach to the construction of the seven-member ring system. [Pg.66]

The synthesis and chemistry of iodonium thiophene derivatives have been studied <00AM133, 00TL5393>, for example, the preparation of 46 involved the ipso substitution of 2-stannylthiophene 45 <00CC649>. A similar ipso substitution of 2-stannylbenzo[b]thiophene 47 with tetranitromethane gave 2-nitrobenzo[ >]thiophene (48) . [Pg.91]

In view of our interest in heterocyclic chemistry 44), a study was begun which had as its scope the synthesis and resolution of phenylthio-phenes capable of existing in two optically active forms due to restricted rotation about their pivot bonds. Two possibilities for these phenyl-thiophenes existed ... [Pg.134]

The preparation of five-membered rings in solid-phase organic chemistry has been reported in several publications. Versatile syntheses of these heterocycles with different numbers and kinds of heteroatoms have been described. The synthesis of five-membered rings containing one nitrogen atom (Fig. 3.6) as pyrrolidines (231) [311-316] pyrroles (232) [317-320] pyrrolidinones (233) [321-323] pyr-rolinones (234) [324—326] 2,5-pyrrolidinediones (235) [327-329] 2,4-pyrrolidine-diones (236) [330-332] 2,5-pyrrolinediones (237) [333] or heterocycles with one oxygen or one sulfur atom like tetrahydrofurans (238) [334—336] 2,5-dihydrofurans (239) [337], furans (240) [338, 339], yS-lactones (241) [340-343], 2,5-dihydrofura-nones (242) [344] (Scheme 3.35) and thiophenes (243) [345, 346] can be accomplished on solid supports. [Pg.179]

Oximes and their derivatives are widely used in organic synthesis. A number of reviews are devoted to the chemistry and biological activity of oximes and their derivatives The synthesis, reactions and biological activity of oximes containing a heterocyclic substituent, e.g. furan and thiophene", indole and isatin, pyridine, pyrrole, quinoline and five-membered heterocycles with two heteroatoms have been reviewed. [Pg.234]


See other pages where Thiophene synthesis chemistry is mentioned: [Pg.2]    [Pg.232]    [Pg.439]    [Pg.48]    [Pg.113]    [Pg.909]    [Pg.976]    [Pg.226]    [Pg.408]    [Pg.251]    [Pg.451]    [Pg.192]    [Pg.353]    [Pg.304]    [Pg.7]    [Pg.226]    [Pg.408]    [Pg.62]    [Pg.101]    [Pg.92]    [Pg.150]    [Pg.669]    [Pg.710]    [Pg.112]    [Pg.117]    [Pg.119]    [Pg.90]    [Pg.90]    [Pg.40]    [Pg.267]    [Pg.296]    [Pg.183]   
See also in sourсe #XX -- [ Pg.147 , Pg.148 , Pg.149 , Pg.150 , Pg.151 , Pg.152 , Pg.153 ]




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