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Chemical reactions in quantum crystals

机译:量子晶体中的化学反应

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Solid parahydrogen, known as a quantum crystal, is a novel matrix for the study of physical and chemical processes of molecules at low temperatures by high-resolution infrared spectroscopy. Ro-vibrational motion of molecules embedded in solid parahydrogen is well quantized on account of the weak interaction in the crystal. In addition, molecules are almost free from the cage effect because of the softness of the quantum crystal, so that a variety of chemical reactions could be observed for molecules in solid parahydrogen at liquid He temperatures. In this article, we survey our recent studies on photodissociation of methyl radicals and subsequent reactions in solid parahydrogen, and discuss ( 1) the nuclear spin selection rule in chemical reactions and ( 2) pure tunnelling reactions obtained from the analysis of the present system.
机译:固态对氢称为量子晶体,是一种新型基质,可通过高分辨率红外光谱研究低温下分子的物理和化学过程。由于晶体中的弱相互作用,可以很好地量化嵌入固体对氢中的分子的Ro振动运动。此外,由于量子晶体的柔软性,分子几乎没有笼效应,因此在液态He温度下,固体对氢中的分子可以观察到多种化学反应。在本文中,我们概述了对甲基自由基的光解离和固体对氢中后续反应的最新研究,并讨论了(1)化学反应中的核自旋选择规则和(2)从本系统分析中获得的纯隧穿反应。

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