暴露于电离辐射的乙醛星际模拟冰中副醛 (C6H12O3) 的形成。

IF 2.3 3区 化学 Q3 CHEMISTRY, PHYSICAL Chemphyschem Pub Date : 2024-10-04 DOI:10.1002/cphc.202400837
Jia Wang, Andrew M Turner, Joshua H Marks, Ryan C Fortenberry, Ralf I Kaiser
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引用次数: 0

摘要

乙醛(CH3CHO)在氨基酸、糖类和糖类相关化合物等前生物分子的合成过程中,以及在深空链式反应聚合过程中发挥着至关重要的作用。在这里,我们首次报道了环状乙醛三聚体--对位醛(C6H12O3)--在作为银河宇宙射线(GCR)替代物的高能辐照下暴露于低温星际模拟冰中的形成过程。利用真空紫外光离子化反射电子飞行时间质谱和同位素置换实验,根据计算出的绝热电离能量和光离子化时特定异构体的解离碎片模式,在辐照乙醛冰的温度编程解吸过程中确定了气相中的副醛。由于乙醛在整个星际介质中无处不在,并已在星际冰中初步确定,因此副醛可能是在冷分子云中的含乙醛冰中形成的,是通过射电望远镜在恒星形成区进行气相观测的绝佳候选物质。从处理过的乙醛冰粒中鉴定出气相中的副醛,加深了我们对复杂有机分子如何通过聚合反应在暴露于高辐射热的地外冰粒中合成的理解。
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Formation of Paraldehyde (C6H12O3) in Interstellar Analog Ices of Acetaldehyde Exposed to Ionizing Radiation.

Acetaldehyde (CH3CHO) plays a crucial role in the synthesis of prebiotic molecules such as amino acids, sugars, and sugar-related compounds, and in the progress of chain reaction polymerization in deep space. Here, we report the first formation of the cyclic acetaldehyde trimer - paraldehyde (C6H12O3) - in low-temperature interstellar analog ices exposed to energetic irradiation as proxies of galactic cosmic rays (GCRs). Utilizing vacuum ultraviolet photoionization reflectron time-of-flight mass spectrometry and isotopic substitution experiments, paraldehyde was identified in the gas phase during the temperature-programmed desorption of the irradiated acetaldehyde ices based on the calculated adiabatic ionization energies and isomer-specific dissociative fragmentation patterns upon photoionization. As acetaldehyde is ubiquitous throughout the interstellar medium and has been tentatively identified in interstellar ices, paraldehyde could have formed in acetaldehyde-containing ices in a cold molecular cloud and is an excellent candidate for gas-phase observation in star-forming regions via radio telescopes. The identification of paraldehyde in the gas phase from the processed acetaldehyde ices advances our understanding of how complex organic molecules can be synthesized through polymerization reactions in extraterrestrial ices exposed to GCRs.

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来源期刊
Chemphyschem
Chemphyschem 化学-物理:原子、分子和化学物理
CiteScore
4.60
自引率
3.40%
发文量
425
审稿时长
1.1 months
期刊介绍: ChemPhysChem is one of the leading chemistry/physics interdisciplinary journals (ISI Impact Factor 2018: 3.077) for physical chemistry and chemical physics. It is published on behalf of Chemistry Europe, an association of 16 European chemical societies. ChemPhysChem is an international source for important primary and critical secondary information across the whole field of physical chemistry and chemical physics. It integrates this wide and flourishing field ranging from Solid State and Soft-Matter Research, Electro- and Photochemistry, Femtochemistry and Nanotechnology, Complex Systems, Single-Molecule Research, Clusters and Colloids, Catalysis and Surface Science, Biophysics and Physical Biochemistry, Atmospheric and Environmental Chemistry, and many more topics. ChemPhysChem is peer-reviewed.
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