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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Fully Coupled Quantum Treatment of Nanoconfined Systems: A Water Molecule inside a Fullerene C-60
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Fully Coupled Quantum Treatment of Nanoconfined Systems: A Water Molecule inside a Fullerene C-60

机译:完全耦合量子处理纳米织物系统:富勒烯C-60内的水分子

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We implemented a systematic procedure for treating the quantal rotations by including all translational and vibrational degrees of freedom for any triatomic bent molecule in any embedded or confined environment, within the MCTDH framework. Fully coupled quantum treatments were employed to investigate unconventional properties in nanoconfined molecular systems. In this way, we facilitate a complete theoretical analysis of the underlying dynamics that enables us to compute the energy levels and the nuclear spin isomers of a single water molecule trapped in a C-60 fullerene cage. The key point lies in the full 9D description of both nuclear and electronic degrees of freedom, as well as a reliable representation of the guest host interaction. The presence of occluded impurities or inhomogeneities due to noncovalent interactions in the interfullerene environment could modify aspects of the potential, causing significant coupling between otherwise uncoupled modes. Using specific n-mode model potentials, we obtained splitting patterns that confirm the effects of symmetry breaking observed by experiments in the ground ortho-H2O state. Further, our investigation reveals that the first rotationally excited states of the encapsulated ortho- and para-H2O have also raised their 3-fold degeneracy. In view of the complexity of the problem, our results highlight the importance of accurate and computational demanding approaches for building up predictive models for such nanoconfined molecules.
机译:我们实施了通过在MCTDH框架内包括任何嵌入式或狭窄环境中的任何三族语弯曲分子的所有翻译和振动​​自由度来治疗量子旋转的系统过程。采用完全耦合量子处理来研究纳米醌分子系统中的非常规性。通过这种方式,我们促进了对潜在动态的完全理论分析,使我们能够计算在C-60富勒烯笼中捕获的单个水分子的能量水平和核自旋异构体。关键点在于核和电子自由度的完整9D描述,以及访客主机交互的可靠表示。由于间肾上腺素环境中的非共价相互作用导致的闭塞杂质或不均匀性可能会改变电位的方面,导致否则在其他方式之间的显着耦合。使用特定的N模式模型电位,我们获得了通过实验在地面Ortho-H2O状态下观察的对称性破碎效果的分裂模式。此外,我们的调查揭示了包封的官能和对段-H2O的第一个旋转激发的态度也提高了它们的3倍的退化。鉴于该问题的复杂性,我们的结果突出了为这些纳米织物分子构建预测模型的准确和计算要求苛刻方法的重要性。

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