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Pyrazolyl-2-pyrazolines

Cationic rings are readily reduced by complex hydrides under relatively mild conditions. Thus isoxazolium salts with sodium borohydride give the 2,5-dihydro derivatives (217) in ethanol, but yield the 2,3-dihydro compound (218) in MeCN/H20 (74CPB70). Pyrazolyl anions are reduced by borohydride to pyrazolines and pyrazolidines. Thiazolyl ions are reduced to 1,2-dihydrothiazoles by lithium aluminum hydride and to tetrahydrothiazoles by sodium borohydride. The tetrahydro compound is probably formed via (219), which results from proton addition to the dihydro derivative (220) containing an enamine function. 1,3-Dithiolylium salts easily add hydride ion from sodium borohydride (Scheme 20) (80AHC(27)151). [Pg.68]

Palladium-catalyzed cyclization reactions with aryl halides have been used to synthesize pyrazole derivatives. V-Aryl-lV-(c>-bromobenzyl)hydrazines 26 participated in a palladium-catalyzed intramolecular amination reaction to give 2-aryl-2W-indazoles 27 . Palladium-catalyzed cascade intermolecular queuing-cyclocondensation reaction of o-iodophenol (28) with dimethylallene and aryl hydrazines provided pyrazolyl chromanones 29 <00TL7129>. A novel one-pot synthesis of 3,5-disubstituted-2-pyrazolines 32 has been achieved with an unexpected coupling-isomerization sequence of haloarene 30, propargyl alcohol 31, and methylhydrazine <00ACIE1253>. [Pg.169]

Pyrazoline derivatives have attracted considerable attention, and their electrochemical oxidation, studied in aqueous277,278 and nonaqueous media,279-290 led to different products, depending on the structure of the starting pyrazoline and the media. The intermediate bis(pyrazolinyl-l)biphenyl derivatives are further oxidized at the applied potential to bis(pyrazolyl-l)-biphenyl derivatives. [Pg.306]


See other pages where Pyrazolyl-2-pyrazolines is mentioned: [Pg.104]    [Pg.176]    [Pg.167]    [Pg.588]    [Pg.163]    [Pg.89]    [Pg.104]    [Pg.67]    [Pg.176]    [Pg.117]   
See also in sourсe #XX -- [ Pg.176 ]




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