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Adsorption and heterogeneous reactions of ClONO2 and N2O5 on/with NaCl aerosol

机译:Clono2和N 2 O5对/含NaCl气溶胶的吸附和异质反应

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The adsorption and heterogeneous reactions of ClONO _(2) and N _(2) O _(5) on the NaCl (100) surface have been investigated by performing density functional theory (DFT) calculations. Possible adsorption structures, energies and electronic properties of ClONO _(2) and N _(2) O _(5) were studied by considering multiple possible adsorption sites without symmetry restriction. The most stable adsorption configurations are a vertical adsorption mode for ClONO _(2) and a horizontal adsorption mode for N _(2) O _(5) , with the adsorption energies of 14.81 and 13.67 kcal mol ~(?1) , respectively. Two possible reactions were proposed on the NaCl (100) surface. Adsorbed ClONO _(2) and N _(2) O _(5) could react with HCl or hydrolyze on the NaCl surface to form HNO _(3) and other gaseous species (Cl _(2) , HOCl and ClNO _(2) ). More importantly, ClONO _(2) and N _(2) O _(5) can actively participate in the heterogeneous reaction with NaCl to generate Cl _(2) and ClNO _(2) , which could be photolyzed to produce reactive chlorine atoms. The adsorbed H _(2) O molecule plays an important role in the key elementary step and promotes the formation of the products. The present results rationalize previous experimental studies well and enrich our understanding of the source of halogen atoms in the marine boundary layer.
机译:通过进行密度泛函理论(DFT)计算,研究了NaCl(100)表面上的Clono _(2)和N _(2)o _(5)的吸附和异质反应。通过考虑没有对称限制的多种可能的吸附位点,研究了Clono _(2)和N _(2)o _(5)的可能的吸附结构,能量和电子性质。最稳定的吸附配置是用于CLONO _(2)的垂直吸附模式,以及用于N _(2)O _(5)的水平吸附模式,其吸附能量分别为14.81和13.67 kcal mol〜(?1) 。在NaCl(100)表面上提出了两种可能的反应。吸附的CLONO _(2)和N _(2)O _(5)可以与HCl反应或在NaCl表面上水解,形成HNO _(3)和其他气态物质(Cl _(2),HoCl和ClNo _( 2))。更重要的是,CLONO_(2)和N _(2)O _(5)可以主动参与与NaCl的非均相反应,以产生Cl _(2)和ClNO _(2),其可以光解以产生反应性氯原子。吸附的H _(2)O分子在关键的基本步骤中起重要作用,并促进了产品的形成。本结果将先前的实验研究吻合得很好,并丰富了我们对海域边界层中卤素原子源的理解。

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