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Reaction Pathway and Intermediates in Carbonaceous Nanoparticles (C60.+, C60.2+) Amination Process: An Ab Initio Study.

Ramin Cheraghali, Shahram Moradi, and Hamid Sepehrian

Recently, much attention has been drawn to the studies of fullerene functionalizations. Ab initio density functional calculations were used to study the microscopic amination mechanism of cation radicals of fullerene (C60.+, C60.2+) and its reaction pathway. In this study, we examine the “direct” interaction of cation radicals of fullerene with ammonia. Structures of transition states, and intermediates, have been studied by using the same computational levels. Our results indicate that the optimal mono and diadditions reactions are exothermic. It is found that the interaction potential of C60.+ and C60.2+ radicals with the ammonia is 127.3 and 84.27 kcal/mole respectively, with respect to the dissociation products.

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谷歌学术
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研究圣经
引用因子
宇宙IF
参考搜索
哈姆达大学
学者指导
国际创新期刊影响因子(IIJIF)
国际组织研究所 (I2OR)
宇宙
日内瓦医学教育与研究基金会

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