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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Oxygen as an Electron Scavenger: Its Role in Electron-Induced Activation of Coadsorbed Methane Embedded in Amorphous Solid Water
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Oxygen as an Electron Scavenger: Its Role in Electron-Induced Activation of Coadsorbed Methane Embedded in Amorphous Solid Water

机译:氧气作为电子清除剂:其在电子诱导的辅作甲烷激活中的作用嵌入无定形固体水中

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Low-energy electrons are known to play a fundamental role in activating small molecules in interstellar chemistry. Here we illustrate the electron-induced activation of the inert molecule methane while sandwiched between two 50 monolayers thick layers of amorphous solid water (ASW) on ruthenium substrate at 25 K by employing externally supplied low-energy electrons (5 eV) under ultrahigh vacuum conditions. We demonstrate how electron transmission through ASW layers under cryogenic conditions is strongly affected in the presence of cosandwiched oxygen molecules. We conclude that the resonant nature and direct electron attachment process leads to a higher degree of conversion in the presence of embedded oxygen molecules along with methane. Cross sections ranging from 1 × 10~(–18) to 1 × 10~(–19) cm~(2)/electrons were obtained from the post-irradiation temperature-programmed desorption spectra.
机译:已知低能量电子在激活星际化学中的小分子中起着基本作用。 在这里,我们通过在超高真空条件下采用外部供应的低能量电子(5eV),说明惰性分子甲烷的电子诱导的惰性分子甲烷的激活在25k上在25k下在钌基板上夹在25k。 。 我们展示了通过在低温条件下通过ASW层的电子传输在Cosandwiched氧分子存在下受到强烈影响。 我们得出结论,共振性质和直接电子连接方法导致嵌入的氧分子与甲烷存在下的更高程度的转化率。 从后照射后温度编程的解吸光谱获得范围为1×10〜(-18)至1×10〜(-19)cm〜(2)/电子的横截面。

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