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Reactions of radiation-induced electrons with carbon dioxide in inert cryogenic films: matrix tuning of the excess electron interactions in solids

机译:辐射诱导的电子用二氧化碳在惰性低温膜中的反应:固体中过量电子相互作用的基质调谐

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摘要

A single-electron reduction of carbon dioxide is supposed to be an important basic step in various processes, ranging from interstellar chemistry to photocatalytic transformations. In this work, we report an FTIR spectroscopic study on the reactions of carbon dioxide ((12)CO(2)and(13)CO(2)) with the radiation-induced excess electrons in deposited cryogenic matrices with different physical characteristics (Ne, N-2, Ar, Xe) occurring at 6 K. The reaction was monitored by the observation of carbon dioxide radical anions. It was found that attachment of excess electrons to CO(2)occurred in neon and nitrogen matrices, but not in argon and xenon. In the case of nitrogen, the formation of matrix-related cationic species (N-4(+)& x2d9; and NNCO+& x2d9;) was also observed. Since the CO(2)molecules have a negative intrinsic electron affinity, it was suggested that the electron attachment to CO(2)is controlled by the energy of excess electrons in the solid matrix, which is determined by the value of the corresponding conduction band bottom energy (V-0). The implications of the obtained results are discussed.
机译:二氧化碳的单电子还原应该是各种过程中的重要基本步骤,从星际化学到光催化转化。在这项工作中,我们报告了对二氧化碳反应的FTIR光谱研究((12)CO(2)和(2)CO(2))与辐射诱导的沉积低温矩阵中的过量电子具有不同的物理特征(NE在6K时发生N-2,Ar,Xe)。通过观察二氧化碳基团阴离子监测反应。发现过量电子与CO(2)的附着在氖和氮基质中发生,但不在氩气和氙中发生。在氮的情况下,还观察到基质相关阳离子物质(N-4(+)和X2D9;和NNCO +&X2D9;)的形成。由于CO(2)分子具有负的内在电子亲和力,因此建议通过固体矩阵中的过量电子的能量来控制对CO(2)的电子连接,这由相应的传导带的值确定底部能量(V-0)。讨论了所获得的结果的影响。

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