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首页> 外文期刊>The Journal of Chemical Physics >Mobilities of carbon cluster ions: Critical importance of the molecular attractive potential
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Mobilities of carbon cluster ions: Critical importance of the molecular attractive potential

机译:碳簇离子的迁移率:分子吸引力的至关重要

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Mobilities in helium gas for isomers belonging to the major structural families of carbon clusters identified in drift tube studies (chains, monocyclic and bicyclic rings, graphite sheets, and fullerenes and their dimers) have been evaluated by trajectory calculations employing a realistic ion-He interaction potential. For all the species considered, the agreement between the measured and calculated mobilities at room temperature improves by at least a factor of 3 over that obtained with the widely used hard-sphere projection approximation. Furthermore, for 3. large representative sample of clusters belonging to all the above families, the results of trajectory calculations as a function of temperature over the range of 78-360 K are in a good agreement with the measured mobilities. This shows that the C-He pairwise potential is only weakly dependent on the structure and chemical bonding of a carbon cluster. Thus this study demonstrates the universal suitability of trajectory calculations for the accurate prediction of the gas phase mobilities for polyatomic ions with various shapes and sizes, and the uniform superiority of this method over the previously used approximations. In particular, the trajectory calculations for large (n = 120-140) fullerenes show that these cages have near-spherical shapes found by theory, while the projection approximation would erroneously assign them as "buckytubes." It also appears that the mobility may be substantially affected by the degree of char localization on a specific atom in the cluster, especially at low temperatures. (C) 1998 American Institute of Physics. [References: 69]
机译:漂移气研究中确定的属于碳簇主要结构族的异构体(链,单环和双环,石墨片,富勒烯及其二聚体)的氦气流动性已通过采用实际的离子-He相互作用的轨迹计算进行了评估潜在。对于所考虑的所有物种,室温下测得的和计算出的迁移率之间的一致性比使用广泛使用的硬球投影逼近所获得的迁移率提高至少三倍。此外,对于属于上述所有族的大型簇的代表性样品,3.在78-360 K范围内随温度变化的轨迹计算结果与测得的迁移率非常吻合。这表明C-He成对电势仅弱地依赖于碳簇的结构和化学键。因此,本研究证明了轨迹计算的普遍适用性,以精确预测各种形状和尺寸的多原子离子的气相迁移率,并且该方法相对于先前使用的近似方法具有统一的优越性。特别是,对于大型(n = 120-140)富勒烯的轨迹计算表明,这些笼子具有理论上发现的接近球形的形状,而投影近似会错误地将它们指定为“ buckytubes”。还显示出迁移率可能受到簇中特定原子上的焦炭定位程度的影响,尤其是在低温下。 (C)1998美国物理研究所。 [参考:69]

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