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Salts thiazolium

The amino group is expected to have decreased reactivity in thiazolium salts. 2-Amino-4,5-trimethylene thiazole (224) heated in diluted HQ at 80°C, however, gives the product 227a (463). The probable mechanism is shown in Scheme 139. This mechanism suggests a retro-Hantzsch ... [Pg.84]

It is noteworthy that some catalysts convert thioethers to quaternary salts where the reactive electrophilic center is no longer one of the two C centers but the C sp center of the thiazolium salt (284. 285). Thus... [Pg.406]

In the first chapter, devoted to thiazole itself, specific emphasis has been given to the structure and mechanistic aspects of the reactivity of the molecule most of the theoretical methods and physical techniques available to date have been applied in the study of thiazole and its derivatives, and the results are discussed in detail The chapter devoted to methods of synthesis is especially detailed and traces the way for the preparation of any monocyclic thiazole derivative. Three chapters concern the non-tautomeric functional derivatives, and two are devoted to amino-, hydroxy- and mercaptothiazoles these chapters constitute the core of the book. All discussion of chemical properties is complemented by tables in which all the known derivatives are inventoried and characterized by their usual physical properties. This information should be of particular value to organic chemists in identifying natural or Synthetic thiazoles. Two brief chapters concern mesoionic thiazoles and selenazoles. Finally, an important chapter is devoted to cyanine dyes derived from thiazolium salts, completing some classical reviews on the subject and discussing recent developments in the studies of the reaction mechanisms involved in their synthesis. [Pg.599]

II. General Synthetic Methods for Thiazole and Thiazolium Salts... [Pg.601]

Cyanine Dyes Derived from Thiazolium Salts "N... [Pg.26]

Thiazolium salts can be obtained either directly by slight modifications of ring-closure methods, already described for the parent bases, or by classical quaternization of the bases, the detailed mechanism of which have been reported in Chapter III the quaternization is best represented by a classical SNj mechanism, the solvent playing an important part (14) unless the reaction is run without any solvent. [Pg.31]

Examples of different kinds of dyes obtained by usual synthesis starting from bis-thiazolium salts are listed in Tables 41A,BtC, 42, 43A.B-C, 44. [Pg.68]


See other pages where Salts thiazolium is mentioned: [Pg.377]    [Pg.407]    [Pg.413]    [Pg.23]    [Pg.31]    [Pg.32]    [Pg.81]    [Pg.81]    [Pg.83]    [Pg.87]    [Pg.97]   
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1,2-Thiazolium salts, rearrangement

44- Thiazolines thiazolium salts

Aldehydes, adducts with thiazolium salts

Benzaldehyde, condensation with thiazolium salts

Benzoin chiral thiazolium salts

Benzoin condensation thiazolium salt-catalyzed

Chiral thiazolium salts

Naphtho thiazolium salts

Naphtho thiazolium salts benzoin condensation

Naphtho thiazolium salts catalysts

Quaternary Thiazolium Salts Formation

Reaction with -Substituted Thioamides (Thiazolium Salts)

Reactions of Thiazolium Salts

Stetter thiazolium salt method

Thiazole Thiazolium salts

Thiazolium

Thiazolium quaternary salts

Thiazolium salts acidity

Thiazolium salts benzoin condensation

Thiazolium salts carbonyl condensation reactions

Thiazolium salts catalysts

Thiazolium salts esters

Thiazolium salts synthesis

Thiazolium salts thiamine

Thiazolium salts, base-catalyzed

Thiazolium salts, catalysis

Thiazolium salts, deprotonation

Thiazolium salts, deuterium exchange

Thiazolium salts, ring opening

Thiazoliums

Thiazolo(2,3-/»]thiazolium salts

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