Slenczka Alkwin
Institute for Physical and Theoretical Chemistry, University of Regensburg, 93053 Regensburg, Germany.
Molecules. 2017 Jul 25;22(8):1244. doi: 10.3390/molecules22081244.
Phthalocyanine and porphyrin were among the first organic compounds investigated by means of electronic spectroscopy in superfluid helium nanodroplets. Superfluid helium nanodroplets serve as a very gentle host system for preparing cold and isolated molecules. The uniqueness of helium nanodroplets is with respect to the superfluid phase which warrants the vanishing viscosity and, thus, minimal perturbation of the dopant species at a temperature as low as 0.37 K. These are ideal conditions for the study of molecular spectra in order to analyze structures as well as dynamic processes. Besides the investigation of the dopant species itself, molecular spectroscopy in helium droplets provides information on the helium droplet and in particular on microsolvation. This article, as part of a special issue on phthalocyanines and porphyrins, reviews electronic spectroscopy of phthalocyanine and porphyrin compounds in superfluid helium nanodroplets. In addition to the wide variety of medical as well as technical and synthetical aspects, this article discusses electronic spectroscopy of phthalocyanines and porphyrins in helium droplets in order to learn about both the dopant and the helium environment.
酞菁和卟啉是最早通过超流氦纳米液滴中的电子光谱法进行研究的有机化合物之一。超流氦纳米液滴是制备冷态和孤立分子的非常温和的主体系统。氦纳米液滴的独特之处在于其超流相,这保证了零粘度,因此在低至0.37 K的温度下对掺杂物种的扰动最小。这些是研究分子光谱以分析结构以及动态过程的理想条件。除了对掺杂物种本身的研究之外,氦液滴中的分子光谱还提供了有关氦液滴的信息,特别是关于微溶剂化的信息。作为关于酞菁和卟啉的特刊的一部分,本文综述了超流氦纳米液滴中酞菁和卟啉化合物的电子光谱。除了广泛的医学以及技术和合成方面之外,本文还讨论了氦液滴中酞菁和卟啉的电子光谱,以便了解掺杂剂和氦环境。