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首页> 外文期刊>The Journal of Chemical Physics >What is special about how roaming chemical reactions traverse their potential surfaces? Differences in geodesic paths between roaming and non-roaming events
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What is special about how roaming chemical reactions traverse their potential surfaces? Differences in geodesic paths between roaming and non-roaming events

机译:关于漫游化学反应如何遍历其潜在表面的特别是什么? 漫游与非漫游事件之间的测地路径的差异

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With the notable exception of some illustrative two-degree-of-freedom models whose surprising classical dynamics has been worked out in detail, theories of roaming have largely bypassed the issue of when and why the counterintuitive phenomenon of roaming occurs. We propose that a useful way to begin to address these issues is to look for the geodesic (most efficient) pathways through the potential surfaces of candidate systems. Although roaming manifests itself in an unusual behavior at asymptotic geometries, we found in the case of formaldehyde dissociation that it was the pathways traversing the parts of the potential surface corresponding to highly vibrationally excited reactants that were the most revealing. An examination of the geodesics for roaming pathways in this region finds that they are much less tightly defined than the geodesics in that same region that lead directly to dissociation (whether into closed-shell products or into radical products). Thus, the broader set of options available to the roaming channel gives it an entropic advantage over more conventional reaction channels. These observations suggest that what leads to roaming in other systems may be less the presence of a localized "roaming transition state," than the existence of an entire region of the potential surface conducive to multiple equivalent pathways. Published by AIP Publishing.
机译:随着一些说明性的双学位的自由模式,其惊人的经典动力学中已经详细制定了​​显着的例外,漫游的理论在很大程度上绕过时,为什么漫游的违反直觉的现象出现的问题。我们建议开始解决这些问题的有用方法是通过候选系统的潜在表面寻找测地(最有效的)途径。虽然漫游在渐近几何形状的不寻常行为中表现出来,但在甲醛解离的情况下,在甲醛解离的情况下,它是横穿最多揭示的高度振动激发反应物的电位表面部分的途径。对该区域漫游途径的电影学检查的发现发现它们比该区域中的测地仪更密切地定义,该区域在与解离(无论是闭式壳产品中还是自由基产品中)。因此,漫游信道可获得的更广泛的选择可以在更传统的反应通道上赋予熵优势。这些观察结果表明,在其他系统中导致漫游的导致可能少于局部“漫游转变状态”的存在,而不是有利于多个等效途径的潜在表面的整个区域的存在。通过AIP发布发布。

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