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氢分子的能量核间距曲线 被引量:2
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作者 刘国群 米立伟 《教育教学论坛》 2017年第10期217-220,共4页
以有关教材中给出的氢分子能量表达式为出发点,首先参考有关文献给出氢分子能量E与核间距R之间的函数关系式,然后以此函数关系式为基础计算出E与R之间的数值关系,最后根据该数值关系绘制出E与R之间的关系曲线。
关键词 分子(h2) 能量一核间距曲线 结构化学
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Molecular Hydrogen Storage in Spherophanes: A Molecular Mechanic Investigation
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作者 Amar Saal Ourida Ouamerali +1 位作者 Claude A. Daul Thibaut Jarrosson 《Journal of Chemistry and Chemical Engineering》 2011年第3期217-228,共12页
At the molecular mechanic level, the capability of a set of 24 molecular cage-like structures, the spherophanes, to store hydrogen molecules has been studied. Two main factors have been found to govern their storage c... At the molecular mechanic level, the capability of a set of 24 molecular cage-like structures, the spherophanes, to store hydrogen molecules has been studied. Two main factors have been found to govern their storage capacity: the volume of their cavity and the potential energy barriers at the different openings at the surface of the cage. Calculations have shown that 13H2 molecules could be stored inside the thiaspherophane, Th4S, whose mean radius is 10A and the resulting complex (H2)I3@Th4S is found to be stable. The results show that it would be very difficult to store more than 2H2 inside the smallest spherophane, Sp4, whose mean radius is 7.7A. The mean intermolecular distance Hz-Hz and the mean bond length H-H have been found to decrease when the number of imprisoned hydrogen molecules increases. It has also been found that the encapsulated H2 molecules form clusters of different symmetries on which the formation energy depends strongly. Even with 13H2 molecules inside Th4S, the weight percentage is still small, 2.57%. The largest obtained wt% is 3.22% in the case of Th5S(CH3)10. 展开更多
关键词 hydrogen storage spherophanes molecular cages molecular containers molecular mechanic MM2.
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