Chang Yao, Ashfold Michael N R, Yuan Kaijun, Yang Xueming
State Key Laboratory of Molecular Reaction Dynamics and Dalian Coherent Light Source, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China.
School of Chemistry, University of Bristol, Bristol BS8 1TS, UK.
Natl Sci Rev. 2023 May 27;10(8):nwad158. doi: 10.1093/nsr/nwad158. eCollection 2023 Aug.
The recently constructed vacuum ultraviolet (VUV) free electron laser (FEL) at the Dalian Coherent Light Source (DCLS) is yielding a wealth of new and exquisitely detailed information about the photofragmentation dynamics of many small gas-phase molecules. This Review focuses particular attention on five triatomic molecules-HO, HS, CO, OCS and CS. Each shows excitation wavelength-dependent dissociation dynamics, yielding photofragments that populate a range of electronic and (in the case of diatomic fragments) vibrational and rotational quantum states, which can be characterized by different translational spectroscopy methods. The photodissociation of an isolated molecule from a well-defined initial quantum state provides a lens through which one can investigate how and why chemical reactions occur, and provides numerous opportunities for fruitful, synergistic collaborations with high-level quantum chemists. The chosen molecules, their photofragments and the subsequent chemical reaction networks to which they can contribute are all crucial in planetary atmospheres and in interstellar and circumstellar environments. The aims of this Review are 3-fold: to highlight new photochemical insights enabled by the VUV-FEL at the DCLS, notably the recently recognized central atom elimination process that is shown to contribute in all of these triatomic molecules; to highlight some of the potential implications of this rich photochemistry to our understanding of interstellar chemistry and molecular evolution within the universe; and to highlight other and future research directions in areas related to chemical reaction dynamics and astrochemistry that will be enabled by increased access to VUV-FEL sources.
大连相干光源(DCLS)最近建成的真空紫外(VUV)自由电子激光(FEL),正在产生大量关于许多小气相分子光解离动力学的全新且极为详细的信息。本综述特别关注五个三原子分子——HO、HS、CO、OCS和CS。每个分子都表现出与激发波长相关的解离动力学,产生的光碎片占据一系列电子态以及(对于双原子碎片而言)振动和转动态,这些可以通过不同的平移光谱方法进行表征。从明确的初始量子态对孤立分子进行光解离,提供了一个视角,通过它可以研究化学反应如何以及为何发生,并为与高水平量子化学家开展富有成效的协同合作提供了众多机会。所选择的分子、它们的光碎片以及它们可能参与的后续化学反应网络,在行星大气以及星际和星周环境中都至关重要。本综述的目的有三个方面:突出大连相干光源的真空紫外自由电子激光所带来的新的光化学见解,特别是最近认识到的中心原子消除过程,该过程在所有这些三原子分子中都有作用;突出这种丰富的光化学对我们理解星际化学和宇宙中分子演化的一些潜在影响;突出在化学反应动力学和天体化学相关领域中,随着对真空紫外自由电子激光源的更多利用而将出现的其他以及未来的研究方向。