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首页> 外文期刊>International Journal of Quantum Chemistry >Adsorption and Dissociation of Carbon Trioxide on Ag(100)
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Adsorption and Dissociation of Carbon Trioxide on Ag(100)

机译:三氧化碳在Ag(100)上的吸附和解离

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摘要

Using density functional theory methods, we have studied carbon trioxide, its adsorption and dissociation on Ag(100). In the gas phase, two isomers are found, D-3/t and C-2v, With the latter of 2.0 kcal mol(-1) lower in energy at the PW91PW91/6-31G(d) level. For CO3 on Ag(100), the calculated adsorption energy is 91.2 and 89.1 kcal mol(-1) for the bi-coord perpendicular and tri-coord parallel structures, respectively. Upon the adsorption, 0.50 similar to 0.56 electron is transferred from silver to CO3, indicative of significant ionic characters of the adsorbate-surface bonding. In addition, the geometry of CO3 is largely changed by its strong interaction with silver. For CO3(ad) -> O-(ad) + CO2(gas), the energy barrier is calculated to be 19.8 kcal mol(-1) through the bi-coord path. The process is endothermic with an enthalpy change of +17.3 similar to +26.7 kcal mol(-1) and the weakly chemisorbed CO2 is identified as an intermediate on the potential energy Surface.
机译:使用密度泛函理论方法,我们研究了三氧化碳,其在Ag(100)上的吸附和离解。在气相中,发现了两种异构体,D-3 / t和C-2v,后者在PW91PW91 / 6-31G(d)的能量降低了2.0 kcal mol(-1)。对于Ag(100)上的CO3,双坐标垂直结构和三坐标平行结构的计算吸附能分别为91.2和89.1 kcal mol(-1)。吸附后,0.50类似于0.56的电子从银转移到CO3,表明被吸附物与表面的键合具有明显的离子特性。此外,CO3与银的强烈相互作用极大地改变了其几何形状。对于CO3(ad)-> O-(ad)+ CO2(气体),通过双坐标路径计算得出的能垒为19.8 kcal mol(-1)。该过程是吸热的,焓变为+17.3,类似于+26.7 kcal mol(-1),化学吸附弱的CO2被识别为势能表面上的中间物。

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