首页> 外文期刊>The Journal of Chemical Physics >Ab initio investigation of the atomistic descriptors in the activation of small molecules on 3d transition-metal 13-atom clusters: The example of H-2, CO, H2O, and CO2
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Ab initio investigation of the atomistic descriptors in the activation of small molecules on 3d transition-metal 13-atom clusters: The example of H-2, CO, H2O, and CO2

机译:AB Initio对3D过渡 - 金属13-原子簇中的小分子激活的原子描述符的研究:H-2,CO,H2O和CO2的实施例

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The identification of the most important descriptors that drive the activation CO2 on transition-metal (TM) catalysts is a crucial step toward the conversion of CO2 into value-added chemicals; however, our atomistic understanding is far from satisfactory. Thus, aiming at the potential use of TM clusters in the conversion of CO2, we report density functional theory calculations of CO2, CO, H2O, and H-2 adsorption on TM13 clusters (TM = Fe, Co, Ni, and Cu). Among the descriptors to evaluate the activation of the studied molecules, we found that the bond lengths increase, angles decrease, and their energetic variations upon the adsorption are the most important ones. From the structural response in anionic gas-phase molecules, the charge transfer toward CO2 and CO is pointed as relevant in their activation, and our results and analyses suggest that the adsorption on 3d TM13 clusters promote this charge donation process, decreasing in the order Fe-13 > Co-13 > Ni-13 > Cu-13. For CO2 and CO on Cu-13, the activation was observed for highest energy configurations, indicating that is necessarily an additional driving force to occur the molecular activation on this material. Also, energetic parameters, adsorption energy, and interaction energy indicated that the strength of the adsorption is not necessarily proportional to the activation; it is difficult to point out these parameters as descriptors. Our results also provide interesting insights about steps of the CO2 reduction mechanism within the context of the modified Fischer-Tropsch synthesis. Published under license by AIP Publishing.
机译:鉴定驱动活化CO2在过渡 - 金属(TM)催化剂上的最重要描述符是朝向转化CO2转化为增值化学品的关键步骤;然而,我们的原子理解远非令人满意。因此,旨在潜在使用TM簇在CO2的转化中,我们报告了CO2,CO,H2O和H-2对TM13簇(TM = Fe,Co,Ni和Cu)的密度泛函理论计算。在评估所研究的分子激活的描述符中,我们发现键长度增加,角度降低,并且吸附对最重要的感觉。从阴离子气相分子中的结构反应,指向CO2和CO的电荷转移在激活中相关,我们的结果和分析表明,3D TM13集群的吸附促进了该电荷捐赠过程,订单递减减少-13> CO-13> Ni-13> Cu-13。对于Cu-13上的CO2和CO,观察到最高能量配置的活化,表明必须是在该材料上发生分子活化的额外驱动力。此外,精力充沛的参数,吸附能量和相互作用能量表明,吸附的强度不一定与激活成比例;难以将这些参数指向描述符。我们的研究结果还提供了有趣的见解,关于改性的费氏托合成的背景下的CO2减少机制的步骤。通过AIP发布在许可证下发布。

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