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Photodissociation of alkyl iodides in helium nanodroplets. II. Solvation dynamics

机译:氦纳米液滴中烷基碘的光解离。二。溶剂动力学

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The solvation dynamics of nonthermal species in liquid helium has been investigated by photolyzing alkyl iodide molecules, CH3I, C2H5I, and CF3I, embedded in helium nanodroplets. Iodine and CH3 fragments are found to leave the droplets solvated by a finite number of helium atoms, this in contrast to C2H5 and CF3 fragments. The speed distributions of the IHeN and CH3HeN complexes show a prominent correlation with the degree of solvation N. It is argued that this correlation is caused by a dynamical adjustment of the solvation structure size to the relative speed of the traveling fragments as they pass through the helium bath. The absence of C2H5HeN and CF3HeN complexes is attributed to the large internal energy of these alkyl fragments which leads to a rapid destruction of any possibly formed complexes. (c) 2007 American Institute of Physics.
机译:液态氦中非热物质的溶剂化动力学已通过光解嵌入氦纳米液滴中的烷基碘分子CH3I,C2H5I和CF3I进行了研究。发现碘和CH3碎片留下的液滴被有限数量的氦原子溶剂化,这与C2H5和CF3碎片相反。 IHeN和CH3HeN配合物的速度分布与溶剂化度N呈显着的相关性。有人认为,这种相关性是由于溶剂化结构尺寸通过移动的碎片通过分子时的相对速度而动态调节引起的。氦浴。 C 2 H 5 HeN和CF 3 HeN配合物的不存在归因于这些烷基片段的大内能,这导致任何可能形成的配合物的快速破坏。 (c)2007年美国物理研究所。

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