Lei Lei, Yao Yuzhong, Zhang Jie, Tronrud Dale, Kong Wei, Zhang Chengzhu, Xue Lan, Dontot Léo, Rapacioli Mathias
Department of Chemistry , Oregon State University , Corvallis , Oregon 97331 , United States.
Department of Statistics , Oregon State University , Corvallis , Oregon 97331 , United States.
J Phys Chem Lett. 2020 Feb 6;11(3):724-729. doi: 10.1021/acs.jpclett.9b03603. Epub 2020 Jan 16.
We report electron diffraction of pyrene nanoclusters embedded in superfluid helium droplets. Using a least-squares fitting procedure, we have been able to separate the contribution of helium from those of the pyrene nanoclusters and determine the most likely structures for dimers and trimers. We confirm that pyrene dimers form a parallel double-layer structure with an interlayer distance of 3.5 Å and suggest that pyrene trimers form a sandwich structure but that the molecular planes are not completely parallel. The relative contributions of the dimers and trimers are ∼6:1. This work is an extension of our effort of solving structures of biological molecules using serial single-molecule electron diffraction imaging. The success of electron diffraction from an all-light-atom sample embedded in helium droplets offers reassuring evidence of the feasibility of this approach.
我们报道了嵌入超流氦滴中的芘纳米团簇的电子衍射。通过最小二乘法拟合程序,我们能够将氦的贡献与芘纳米团簇的贡献区分开来,并确定二聚体和三聚体最可能的结构。我们证实芘二聚体形成了层间距离为3.5 Å的平行双层结构,并表明芘三聚体形成了夹心结构,但分子平面并不完全平行。二聚体和三聚体的相对贡献约为6:1。这项工作是我们利用串行单分子电子衍射成像解析生物分子结构努力的延伸。从嵌入氦滴中的全轻原子样品获得电子衍射的成功为这种方法的可行性提供了可靠的证据。