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Irreversible xenon insertion into a small-pore zeolite at moderate pressures and temperatures

机译:在中等压力和温度下不可逆地将氙气插入小孔沸石中

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Pressure drastically alters the chemical and physical properties of materials and allows structural phase transitions and chemical reactions to occur that defy much of our understanding gained under ambient conditions. Particularly exciting is the high-pressure chemistry of xenon, which is known to react with hydrogen and ice at high pressures and form stable compounds. Here, we show that Ag_(16)AI_(16)Si_(24)O8·16H2O (Ag-natrolite) irreversibly inserts xenon into its micropores at 1.7 GPa and 250 °C, while Ag~+ is reduced to metallic Ag and possibly oxidized to Ag~(2+). In contrast to krypton, xenon is retained within the pores of this zeolite after pressure release and requires heat to desorb. This irreversible insertion and trapping of xenon in Ag-natrolite under moderate conditions sheds new light on chemical reactions that could account for the xenon deficiency relative to argon observed in terrestrial and Martian atmospheres.
机译:压力极大地改变了材料的化学和物理性质,并允许结构相变和化学反应的发生,这违背了我们在环境条件下获得的许多理解。氙气的高压化学特别令人兴奋,已知它会在高压下与氢气和冰反应并形成稳定的化合物。在这里,我们表明Ag_(16)AI_(16)Si_(24)O8·16H2O(Ag-钠铝沸石)在1.7 GPa和250°C下不可逆地将氙插入其微孔中,而Ag〜+被还原为金属Ag,并且可能氧化成Ag〜(2+)。与k相反,氙在压力释放后会保留在该沸石的孔中,并且需要热量才能解吸。氙在中等条件下不可逆地在Ag-钠沸石中的插入和捕集为化学反应提供了新的思路,这些化学反应可以解释在陆地和火星大气中相对于氩而言氙的缺乏。

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