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首页> 外文期刊>Chemistry: A European journal >On the mechanism of the thermal retrocycloaddition of pyrrolidinofullerenes (retro-prato reaction)
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On the mechanism of the thermal retrocycloaddition of pyrrolidinofullerenes (retro-prato reaction)

机译:吡咯烷基富勒烯热逆加成反应的机理

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In contrast to N-methyl or N-unsubstituted pyrrolidinofullerenes, which efficiently undergo the retrocycloaddition reaction to quantitatively afford pristine fullerene, N-benzoyl derivatives do not give this reaction under the same experimental conditions. To unravel the mechanism of the retrocycloaddition process, trapping experiments of the in-situ thermally generated azomethine ylides, with an efficient dipolarophile were conducted. These experiments afforded the respective cycloadducts as an endo/exo isomeric mixture. Theoretical calculations carried out at the DFT level and by using the two-layered ONIOM (our own n-layered integrated molecular orbital and molecular mechanics) approach underpin the experimental findings and predict that the presence of the dienophile is not a basic requirement for the azomethine ylide to be able to leave the fullerene surface under thermal conditions. Once the 1,3-dipole is generated in the reaction medium, it is efficiently trapped by the dipolarophile (maleic anhydride or N-phenylmaleimide). However, for N-unsubstituted pyrrolidinofullerenes, the participation of the dipolarophile in assisting the 1,3-dipole to leave the fullerene surface throughout the whole reaction pathway is also a plausible mechanism that cannot be ruled out.
机译:与有效地进行逆向加成反应以定量提供原始富勒烯的N-甲基或N-未取代的吡咯烷基富勒烯相反,N-苯甲酰基衍生物在相同的实验条件下不进行该反应。为了弄清逆环加成过程的机理,进行了原位热生成的偶氮甲亚胺基团与有效的双亲亲油的捕获实验。这些实验提供了作为内/外异构体混合物的各个环加合物。在DFT级别并通过使用两层ONIOM(我们自己的n层集成分子轨道和分子力学)方法进行的理论计算是实验结果的基础,并预测存在二烯亲体不是对偶氮甲碱的基本要求叶立德能够在热条件下离开富勒烯表面。一旦在反应介质中产生了1,3-偶极子,它就会被亲偶极子(马来酸酐或N-苯基马来酰亚胺)有效地捕获。但是,对于N-未取代的吡咯烷基富勒烯,亲核试剂在整个反应路径中参与协助1,3-偶极离开富勒烯表面也是一种可能的机制,不能排除。

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