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首页> 外文期刊>Angewandte Chemie >1,1,2-Ethenetriol: The Enol of Glycolic Acid, a High-Energy Prebiotic Molecule
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1,1,2-Ethenetriol: The Enol of Glycolic Acid, a High-Energy Prebiotic Molecule

机译:1,1,2-乙二醇:乙醇酸的烯醇,高能量益生元分子

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摘要

As low-temperature conditions (e.g. in space) prohibit reactions requiring large activation energies, an alternative mechanism for follow-up transformations of highly stable molecules involves the reactions of higher energy isomers that were generated in a different environment. Hence, one working model for the formation of larger organic molecules is their generation from high-lying isomers of otherwise rather stable molecules. As an example, we present here the synthesis as well as IR and UV/Vis spectroscopic identification of the previously elusive 1,1,2-ethenetriol, the higher energy enol tautomer of glycolic acid, a rather stable and hence unreactive biological building block. The title compound was generated in the gas phase by flash vacuum pyrolysis of tartronic acid at 400 degrees C and was subsequently trapped in argon matrices at 10 K. The spectral assignments are supported by B3LYP/6-311++G(2d,2p) computations. Upon photolysis at lambda=180-254 nm, 1,1,2-ethenetriol rearranges to glycolic acid and ketene.
机译:由于低温条件(例如在太空中)禁止需要大活化能的反应,因此高稳定分子后续转化的另一种机制涉及在不同环境中生成的高能异构体的反应。因此,更大的有机分子形成的一个工作模式是,它们是由原本相当稳定的分子的高位异构体生成的。作为一个例子,我们在这里介绍了先前难以捉摸的1,1,2-乙烯三醇的合成以及红外和紫外/可见光谱鉴定,它是乙醇酸的高能烯醇互变异构体,是一种相当稳定的、因此不活跃的生物构建块。标题化合物在400℃下通过酒石酸的快速真空热解在气相中生成,随后在10 K下被困在氩基质中。光谱分配由B3LYP/6-311++G(2d,2p)计算支持。在λ=180-254 nm的光解下,1,1,2-乙烯三醇重排为乙醇酸和烯酮。

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