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Spectroscopy of free radicals and radical containing entrance-channel complexes in superfluid helium nanodroplets

机译:超流氦纳米液滴中自由基和含自由基的入口通道络合物的光谱学

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摘要

The spectroscopy of free radicals and of radical containing entrance- channel complexes embedded in superfluid helium nanodroplets is reviewed. The collection of dopants inside individual droplets represents a micro- canonical ensemble, and as such each droplet may be considered an isolated cryo- reactor. The unique properties of the droplets, namely their low temperature ( 0.4 K) and fast cooling rates ( similar to 10(16) Ks(-1)), provide novel opportunities for the formation and high-resolution study of molecular complexes containing free radicals. Radical production methods are discussed in the light of their applicability for embedding radicals in helium droplets. The spectroscopic studies performed to date on molecular radicals and on entrance/exit- channel complexes of radicals with stable molecules are detailed. The observed complexes provide new information on the potential energy surfaces of several fundamental chemical reactions and on the intermolecular interactions present in open- shell systems. Prospects for further experiments of radicals embedded in helium droplets are discussed, especially the possibility of preparing, studying, and manipulating high- energy structures, as well as the possibility of using them in fundamental physics experiments.
机译:综述了嵌入超流氦纳米液滴中的自由基和包含自由基的进入通道复合物的光谱。单个液滴内部的掺杂物集合代表一个微规范的集合,因此每个液滴都可以被视为一个隔离的低温反应器。液滴的独特特性,即它们的低温(0.4 K)和快速冷却速率(类似于10(16)Ks(-1)),为包含自由基的分子复合物的形成和高分辨率研究提供了新的机会。根据自由基产生方法在自由基嵌入氦气液滴中的适用性,对自由基产生方法进行了讨论。迄今为止,已对分子自由基以及自由基与稳定分子的进/出通道络合物进行了光谱研究。观察到的配合物提供了一些基本化学反应的势能面以及开壳系统中存在的分子间相互作用的新信息。讨论了进一步实验嵌入氦滴中的自由基的前景,特别是制备,研究和操纵高能结构的可能性,以及在基础物理实验中使用它们的可能性。

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