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简单的离子-气体混合物作为与前生物化学相关的关键分子的来源。

Simple Ion-Gas Mixtures as a Source of Key Molecules Relevant to Prebiotic Chemistry.

机构信息

Department of Chemistry, Saint Mary's University, Halifax, NS B3H 3C3, Canada.

出版信息

Molecules. 2021 Dec 6;26(23):7394. doi: 10.3390/molecules26237394.

Abstract

Very simple chemistry can result in the rapid and high-yield production of key prebiotic inorganic molecules. The two reactions investigated here involve such simple systems, (a) carbon disulfide (CS) and acetate (CHCOO¯) and (b) sulfur dioxide (SO) and formate (HCOO¯). They have been carried out under non-aqueous conditions, either in an organic solvent or with a powdered salt exposed to the requisite gas. Under such dry conditions the first reaction generated the thioacetate anion [CHCOS]¯ while the second produced the radical [SO]¯anion. Anhydrous conditions are not rare and may have arisen on the early earth at sites where an interface between different phases (liquid/gas or solid/gas) could be generated. This is one way to rationalize the formation of molecules and ions (such as we have produced) necessary in the prebiotic world. Interpretation of our results provides insight into scenarios consistent with the more prominent theories of abiogenesis.

摘要

非常简单的化学反应可以快速高产地生成关键的前生物无机分子。这里研究的两个反应涉及到如此简单的体系:(a)二硫化碳(CS)和乙酸盐(CHCOO¯);(b)二氧化硫(SO)和甲酸盐(HCOO¯)。这些反应在非水条件下进行,要么在有机溶剂中,要么在暴露于所需气体的粉状盐中进行。在这种干燥条件下,第一个反应生成了硫代乙酸根阴离子[CHCOS]¯,而第二个反应则产生了自由基[SO]¯阴离子。无水条件并不罕见,在早期地球上的不同相(液/气或固/气)之间可能会产生界面的地方可能会出现。这是合理化前生物世界中所需分子和离子(如我们所产生的)形成的一种方式。对我们结果的解释提供了对与更突出的生物发生理论一致的情景的深入了解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2fcc/8659102/80b31b31c824/molecules-26-07394-sch001.jpg

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