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首页> 外文期刊>Journal of molecular modeling >Trapping N-5 rings and N-3 chains on the outer surface of fullerene C-60: a theoretical study
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Trapping N-5 rings and N-3 chains on the outer surface of fullerene C-60: a theoretical study

机译:在富勒烯C-60的外表面捕获N-5环和N-3链的理论研究

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The capture of N-3-chains and N-5-rings on the outer surface of C-60 was studied using density functional calculations. For the neutral N-5-ring, it was found that a N-5-ring trapped by a C-60 cage becomes more stable than an isolated N-5-ring radical, and a C-60-N-5 compound with a C-N bond at an exohedral position of C-60 is more stable than an isomer with the N-5-ring encapsulated in C-60. Such stability arises from the reduction in molecular strain energy, and charge transfer from C-60 to N-5. Dynamics calculations indicate that capture of the N-5-ring on the outer surface of C-60 is a barrierless process. Furthermore, the trapping sites of more N-5-rings on the C-60 were determined using condensed Fukui functions, where the N-5-rings prefer to be trapped on the surface to form addition products across 6,6-junctions. Based on the optimized geometries of C-60-(N-5) n ( n= 2, 6, 10), their chemical stabilities were found to be comparable with that of C-60 in terms of the gap between the highest occupied molecular orbitals and the lowest unoccupied molecular orbitals. Similar phenomena were found for an N-3-chain wrapped on the surface of C-60. However, the results of the average adsorption energies show that C-60 can capture N-5-rings more effectively than N-3-chains.
机译:使用密度泛函计算研究了C-60外表面上N-3-链和N-5-环的捕获。对于中性的N-5-环,发现被C-60笼捕获的N-5-环比分离的N-5-环自由基更稳定,而C-60-N-5化合物具有C-60面外位置的CN键比N-60环包裹在C-60中的异构体更稳定。这种稳定性来自分子应变能的降低以及电荷从C-60到N-5的转移。动力学计算表明,在C-60外表面捕获N-5-环是无障碍过程。此外,使用缩合的Fukui函数确定了C-60上更多N-5-环的俘获位点,其中N-5-环更喜欢被俘获在表面上以形成跨6,6-结的加成产物。根据C-60-(N-5)n(n = 2、6、10)的最佳几何形状,发现它们的化学稳定性在最高占据分子之间的间隙方面与C-60相当轨道和最低的未占用分子轨道。对于包裹在C-60表面的N-3-链也发现了类似的现象。但是,平均吸附能的结果表明,C-60比N-3-链更有效地捕获N-5-环。

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