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首页> 外文期刊>Angewandte Chemie >HACA's Heritage: A Free-Radical Pathway to Phenanthrene in Circumstellar Envelopes of Asymptotic Giant Branch Stars
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HACA's Heritage: A Free-Radical Pathway to Phenanthrene in Circumstellar Envelopes of Asymptotic Giant Branch Stars

机译:哈卡的遗产:在渐近巨型分支星星的星形信封中对菲利的自由基途径

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摘要

The hydrogen-abstraction/acetylene-addition (HACA) mechanism has been central for the last decades in attempting to rationalize the formation of polycyclic aromatic hydrocarbons (PAHs) as detected in carbonaceous meteorites such as in Murchison. Nevertheless, the basic reaction mechanisms leading to the formation of even the simplest tricyclic PAHs like anthracene and phenanthrene are still elusive. Here, by exploring the previously unknown chemistry of the orthobiphenylyl radical with acetylene, we deliver compelling evidence on the efficient synthesis of phenanthrene in carbon-rich circumstellar environments. However, the lack of formation of the anthracene isomer implies that HACA alone cannot be responsible for the formation of PAHs in extreme environments. Considering the overall picture, alternative pathways such as vinylacetylene-mediated reactions are required to play a crucial role in the synthesis of complex PAHs in circumstellar envelopes of dying carbon-rich stars.
机译:过去几十年来试图将多环芳烃(PAHS)的形成如含碳陨石如撒奇胺中检测到的碳质陨石中的形成,氢气抽取/乙炔添加(HACA)机制是中央的。 尽管如此,仍然是蒽和菲等最简单的三环的基本反应机制仍然难以捉摸。 这里,通过探索与乙炔的先前未知的正交性基团的化学性,我们提供有关富含碳富含膦植入的菲素的令人信服的证据。 然而,缺乏蒽异构体的形成意味着单独的Haca不能负责在极端环境中形成PAH。 考虑到整体图像,需要替代途径,例如乙烯基乙炔介导的反应,以在染色富含碳恒星的染色包膜中的复合PAH的合成中发挥至关重要的作用。

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