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星际介质中由乙烯醇与氰基自由基反应生成的新型益生元分子:无监督反应机理发现、精确电子结构计算及动力学模拟

New prebiotic molecules in the interstellar medium from the reaction between vinyl alcohol and CN radicals: unsupervised reaction mechanism discovery, accurate electronic structure calculations and kinetic simulations.

作者信息

Ballotta Bernardo, Martínez-Núñez Emilio, Rampino Sergio, Barone Vincenzo

机构信息

Scuola Normale Superiore, Piazza dei Cavalieri 7, 56126, Pisa, Italy.

Departamento de Química Física, Facultade de Química, Campus Vida, Universidade de Santiago de Compostela, Avenida das Ciencias s/n, 15782, Santiago de Compostela, Spain.

出版信息

Phys Chem Chem Phys. 2023 Aug 30;25(34):22840-22850. doi: 10.1039/d3cp02571c.

Abstract

Vinyl alcohol (VyA) and cyanide (CN) radicals are relatively abundant in the interstellar medium (ISM). VyA is the enolic tautomer of acetaldehyde and has two low-lying conformers, characterized by the or placement of hydroxyl hydrogen with respect to the double bond. In this paper, we present a gas-phase model of the barrierless reactions of both VyA's conformers with CN employing accurate quantum chemical computations in the framework of a master equation approach based on the transition state theory. Our results indicate that both VyA conformers feature a similar reactivity with CN, starting with a barrierless addition to the double bond and followed by different isomerization, dissociation, and/or hydrogen elimination steps. The rate constants computed for temperatures up to 600 K show that several reaction channels are open even under the harsh conditions of the ISM, with the favoured one providing the first feasible formation route of a prebiotic molecule not yet detected in the ISM, namely cyanoacetaldehyde. This finding suggests looking for cyanoacetaldehyde in regions where both VyA and CN have already been detected, like, , Sagittarius B2N or G+0.693-0.027.

摘要

乙烯醇(VyA)和氰基(CN)自由基在星际介质(ISM)中相对丰富。VyA是乙醛的烯醇互变异构体,有两种低位构象异构体,其特征在于羟基氢相对于双键的 或 位置。在本文中,我们在基于过渡态理论的主方程方法框架内,采用精确的量子化学计算,给出了VyA两种构象异构体与CN的无势垒反应的气相模型。我们的结果表明,VyA的两种构象异构体与CN具有相似的反应活性,首先是无势垒加成到双键上,随后是不同的异构化、解离和/或氢消除步骤。计算得到的高达600 K温度下的速率常数表明,即使在星际介质的苛刻条件下,几个反应通道也是开放的,其中最有利的通道提供了一种尚未在星际介质中检测到的益生元分子——氰基乙醛的首个可行形成途径。这一发现表明,在已经检测到VyA和CN的区域寻找氰基乙醛,比如人马座B2N或G+0.693 - 0.027。

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