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Activation and splitting of carbon dioxide on the surface of an inorganic electride material

机译:无机驻极体材料表面上二氧化碳的活化和分解

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Activation of carbon dioxide is the most important step in its conversion into valuable chemicals. Surfaces of stable oxide with a low work function may be promising for this purpose. Here we report that the surfaces of the inorganic electride [Ca24Al28O64](4+)(e(-))(4) activate and split carbon dioxide at room temperature. This behaviour is attributed to a high concentration of localized electrons in the near-surface region and a corrugation of the surface that can trap oxygen atoms and strained carbon monoxide and carbon dioxide molecules. The [Ca24Al28O64](4+)(e(-))(4) surface exposed to carbon dioxide is studied using temperature-programmed desorption, and spectroscopic methods. The results of these measurements, corroborated with ab initio simulations, show that both carbon monoxide and carbon dioxide adsorb on the [Ca24Al28O64](4+)(e(-))(4) surface at RT and above and adopt unusual configurations that result in desorption of molecular carbon monoxide and atomic oxygen upon heating.RI Sushko, Peter/F-5171-2013; Hosono, Hideo/J-3489-2013OI Hosono, Hideo/0000-0001-9260-6728
机译:二氧化碳的活化是将其转化为有价值的化学物质中最重要的一步。具有低功函的稳定氧化物的表面可能为此目的。在这里,我们报告的无机电解质[Ca24Al28O64](4 +)(e(-))(4)的表面在室温下会活化并分解二氧化碳。该行为归因于在近表面区域中的局部电子高度集中以及表面的波纹,该波纹可捕获氧原子以及应变的一氧化碳和二氧化碳分子。使用程序升温脱附和光谱方法研究了暴露于二氧化碳的[Ca24Al28O64](4 +)(e(-))(4)表面。这些测量的结果得到了从头算的证实,表明一氧化碳和二氧化碳在室温及以上温度下均吸附在[Ca24Al28O64](4 +)(e(-))(4)表面上,并采用不同寻常的构型加热时分子一氧化碳和原子氧的解吸.RI Sushko,Peter / F-5171-2013; Hideo细野/ J-3489-2013OI Hideo细野/ 0000-0001-9260-6728

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