单光子电离诱导了烯 (AN) - 烯 (Py) 集群中的新的共价键形成
Xujian Chen1, Chengcheng Wei1, Min Xie1
1MOE Key Laboratory of Laser Life Science & Guangdong Provincial Key Laboratory of Laser Life Science, Guangzhou Key Laboratory of Spectral Analysis and Functional Probes, College of Biophotonics, South China Normal University, Guangzhou 510631, China.
The journal of physical chemistry. A
|September 28, 2023
概括
真空紫外线诱导烯和烯集群中的新的共价键,形成新的含有机化合物. 这项研究揭示了星际空间中前生物分子的形成.
科学领域:
- 天体化学是天体化学.
- 化学进化的化学进化
- 生命的起源研究 生命的起源研究
背景情况:
- 含有的有机化合物对于理解化学进化和星际介质 (ISM) 生命起源至关重要.
- 烯 (AN) 和 (Py) 是星际化学中的关键分子.
研究的目的:
- 为了研究单光子电离后从烯和烯集群中形成新的含化合物.
- 阐明电离AN-Py和AN-Py2集群中的结构变化和键形成.
主要方法:
- 使用真空紫外线 (VUV) 和红外线 (IR) 光谱.
- 执行理论计算来分析集群结构和反应.
- 研究了烯和烯的气态集群.
主要成果:
- 中性AN-Py星团表现出强大的线性键.
- 中性AN-Py2集群形成循环或双循环结网络.
- 在AN-Py集群的VUV电离导致新的C-C共价键在H-结合结构旁边形成.
- 化AN-Py2集群的结果是新的C-C或C-N共价键,主要是在pyrrole单位之间,形成一个 (Py) 2+核心.
结论:
- 紫外线诱导的AN和Py集群的电离促进了新的共价键的形成,特别是在醇分子之间.
- 提供了在星际条件下合成新型含有机化合物的光谱证据.
- 有助于理解在太空中多样化 prebiotic 分子形成的途径.
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