Photoaddition of N-substituted piperazines to C60: an efficient approach to the synthesis of water-soluble fullerene derivatives.
Olesya A Troshina, Pavel A Troshin, Alexander S Peregudov, Viacheslav I Kozlovski, Rimma N Lyubovskaya
Index: Chemistry 12(21) , 5569-77, (2006)
Full Text: HTML
Abstract
An oxidative radical photoaddition of mono N-substituted piperazines to [60]fullerene was systematically investigated. Reactions of C60 with piperazines bearing bulky electron-withdrawing groups (2-pyridyl, 2-pyrimidinyl) were found to be the most selective and yielded C60(amine)4O as major products along with small amounts of C60(amine)2. In contrast, interactions of fullerene with N-methylpiperazine and N-(tert-butoxycarbonyl)piperazine were found to have low selectivity due to different side reactions. Tetraaminofullerene derivative C60(N-(2-pyridyl)piperazine)4O was found to react readily with organic and inorganic acids to yield highly water-soluble salts (solubility approximately 150 mg mL(-1)). In contrast, C60(N-(2-pyrimidinyl)piperazine)4O undergoes hydrolysis under the same conditions and results in a complex mixture of compounds with an average composition of C60(N-(2-pyrimidinyl)piperazine)2(OH)2O. Radical photoaddition of N-(2-pyridyl)piperazine to fullerene derivatives can be used as a facile route for their transformation into water-soluble compounds. Two model fullerene cycloadducts (a methanofullerene and a pyrrolidinofullerene) were easily converted into mixtures of regioisomers of A=C60(N-(2-pyridyl)piperazine)4O (A=cyclic addend) that give highly water-soluble salts under acid treatment.
Related Compounds
Related Articles:
2002-11-27
[J. Am. Chem. Soc. 124(47) , 14104-14, (2002)]
2010-08-28
[Dalton Trans. 39(32) , 7547-55, (2010)]
2013-09-01
[Drug Dev. Ind. Pharm. 39(9) , 1346-56, (2013)]
2011-11-01
[Acta Crystallogr. Sect. E Struct. Rep. Online 67(Pt 11) , m1605, (2011)]
1986-01-01
[Int. Arch. Allergy Appl. Immunol. 79(3) , 259-62, (1986)]