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Arenes with aryldiazonium salts

Besides the most important area of surface coatings, the use of photopolymers as photoresists in the manufacture of printed circuits is well established. Photoimaging with aryldiazonium salt photoinitiators and multifunctional cresol-novolac epoxides was first described by Schlesinger Crivello has mentioned several new photoresists based on the photopolymerization of epoxides with onium initiators Meier and Zweifel have shown that iron arene salts in combination with multifunctional cresol-novolac epoxides yield photoresists with high resolution and contrast. Dual functional epoxides (cf. Sect. 5) containing chalcone groups as light-sensitive units have been described as suitable photoresists especially... [Pg.78]

Aryldiazonium salts, usually obtained from arylamines, undergo replacement of the diazonium group with a variety of nucleophiles to provide advantageous methods for producing aryl halides, cyanides, phenols and arenes by reductive removal of the diazo group. Coupling reaction of aryldiazonium salts with phenols or arylamines give rise to the formation of azo dyes. [Pg.131]

The addition of aryl radicals, generated by chemical reduction of aryldiazonium salts, onto arenes in the Gomberg-Hey reaction is well established [163]. The addition of these radicals to alkenes in the Meerwein reaction is also well known [164], Aryl o-radicals generated by electrochemical reduction of aryl halides take part in similar reactions. Good yields of the products are obtained when the intermediate phenyl radical can react in an intramolecular manner. The addition step is then fast and competes successfully with further electron transfer to form the phenyl car-banion, followed by protonation. [Pg.128]

Three methods are commonly employed for the in situ preparation of organopalladium derivatives (i) direct metallation of an arene or heterocyclic compound with a palladium(II) salt (ii) exchange of the organic group from a main group organometallic to a palladium(II) compound and (iii) oxidative addition of an organic halide, triflate or aryldiazonium salt to palladium(O) or a palladium(O) complex. [Pg.834]

A paper on new approaches to the generation of arylphosphinidenes has been published. The stable bis-azide precursor (133) upon photolysis, or vapour phase thermolysis, gave (134), obviously via the phosphinidene (135) the same product was obtained by photolysis of the phosphaketene (136). The reduction of aryldiazonium salts to arenes with triethyl phosphite or triphenylphosphine is shown to proceed by a radical-chain mechanism. The previously described photo-Arbuzov rearrangement of benzyl phosphites has been used to prepare several acyclic phosphonate nucleotide analogues, e.g. (137). ... [Pg.103]

The use of dry aryldiazonium salts of naphthalene-1-sulfonic [70], naphthalene-1,5-disulfonic [70], ZnCl2 complex [70], hexafluorophosphoric or tetrafluoroboric acid [61] in non-aqueous medium under as mild as possible reaction conditions is substantial to reach higher yields of biaryls. An alternative method for non-aqueous GBH reaction is the aprotic diazotation of aromatic amines with alkyl nitrites such as butyl or pentyl nitrite with subsequent arylation of aromatic compound, as demonstrated by Cadogan [71,72]. This method is realized by simple heating the mixture of aromatic amine, alkyl nitrite and liquid arene at an elevated temperature. When a mixture of 3-aminopyridine (46), benzene and pentyl nitrite is heated at reflux, 3-phenylpyridine (47) is obtained with a 55% yield [71], Scheme 16. [Pg.20]

The intramolecular coupling reaction between an aryldiazonium salt (III) with an arene subunit to form five- or six-membered ring by the influence of copper or an acid, is called the Pschorr cyclization reaction [85]. In historical examples the Pschorr cyclization was used in the synthesis of phenanthrene and its derivatives. For example, c -stilbene derivative 49 is diazotized to give 50, and subsequently treated with the activated copper to obtain phenanthrene (51) in 34% yield [86], Scheme 21. [Pg.25]

Further important organometallics which offer ready access to the homo-coupling products are arylmercuric halides. This can be easily prepared by several ways, but the most convenienty from the corresponding aryldiazonium salts via the Nesmeyanov reaction, see Chapter 4. Arylmercuric chlorides derived from electron-rich arenes such as thiophene, which easily undergoes the direct mercuration reaction at 2-position, can be readily coupled with an equimolar amount of palladium(II) chloride in the presence of triethylamine as the base in high yield [35], Scheme 16. [Pg.255]


See other pages where Arenes with aryldiazonium salts is mentioned: [Pg.116]    [Pg.119]    [Pg.850]    [Pg.853]    [Pg.18]    [Pg.19]    [Pg.119]    [Pg.18]    [Pg.120]    [Pg.120]   
See also in sourсe #XX -- [ Pg.17 , Pg.18 , Pg.19 , Pg.20 , Pg.21 , Pg.22 , Pg.23 ]

See also in sourсe #XX -- [ Pg.17 , Pg.18 , Pg.19 , Pg.20 , Pg.21 , Pg.22 , Pg.23 ]




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Aryldiazonium

Aryldiazonium salt

With arenes

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