Operando exploration of tribochemical decomposition in synthetic FeS2 thin film and mineral iron pyrite†

E. Muñoz-Cortés, J. Sánchez-Prieto, B. Zabala, C. Sanchez, E. Flores, A. Flores, E. Roman, J. R. Ares and R. Nevshupa
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Abstract

Tribochemical decomposition of thin-film synthetic iron disulfide and mineral iron pyrite was studied using a combination of operando mass-spectrometry coupled to ultrahigh vacuum tribochemical cell and the gas expansion system. The composition and kinetics of gas emission were analyzed using an original methodology. It was found that carbon-containing gases were dominating. The sulfur-containing gases comprised H2S, COS and CS2. The latter two were unexpected. The emission of these gases was traced back to solid-state chemical reactions kinetically controlled by the precursor concentrations and driven through non-thermal mechanisms, which we tentatively assigned to formation of sulfur radicals.

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合成 FeS2 薄膜和矿物黄铁矿中摩擦化学分解的 Operando 勘探†。
通过将操作式质谱仪与超高真空摩擦生化池和气体膨胀系统相结合,研究了薄膜合成二硫化铁和矿物黄铁矿的摩擦生化分解。采用一种独创的方法分析了气体排放的成分和动力学。结果发现,含碳气体占主导地位。含硫气体包括 H2S、COS 和 CS2。后两种气体出乎意料。这些气体的排放可追溯到固态化学反应,其动力学受前体浓度控制,并通过非热机制驱动,我们暂时将其归结为硫自由基的形成。
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