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首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Microsolvation of Phthalocyanines in Superfluid Helium Droplets
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Microsolvation of Phthalocyanines in Superfluid Helium Droplets

机译:超流体氦滴中酞菁的微溶剂化

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Experimental and theoretical investigations of the spectroscopy of molecules in superfluid helium droplets provide evidence for the key role of the first helium layer surrounding the dopant molecule in determining the molecule's spectroscopic features. Recent investigations of emission spectra of phthalocyanine in helium droplets revealed a doubling of all transitions. Herein, we present the emission spectra of Mg-phthalocyanine and of phthalocyanine-argon clusters in helium droplets, which confirm the splitting as a general effect of the helium environment. A scheme of levels is deduced from the emission spectra and attributed to quantized states of the first helium layer surrounding the dopant molecule.
机译:对超流体氦滴中分子的光谱学进行的实验和理论研究为围绕掺杂剂分子的第一氦层在确定分子的光谱学特征方面的关键作用提供了证据。最近对氦气液滴中酞菁的发射光谱的研究表明,所有跃迁都增加了一倍。在这里,我们介绍了氦气液滴中Mg-酞菁和酞菁-氩气团簇的发射光谱,这确认了分裂是氦气环境的一般效应。从发射光谱推导出能级方案,并将其归因于围绕掺杂剂分子的第一氦层的量化状态。

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