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Adsorption and Decarbonylation Reaction of Furfural on the Pd(111) and M/Pd(111)(M=Ni, Cu and Ru) Surfaces

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【作者】 夏盛杰方镭钱梦丹孟跃倪哲明

【Author】 XIA Sheng-Jie;FANG Lei;QIAN Meng-Dan;MENG Yue;NI Zhe-Ming;Laboratory of Advanced Catalytic Materials, College of Chemical Engineering, Zhejiang University of Technology;School of Life Sciences, Huzhou University;

【通讯作者】 倪哲明;

【机构】 Laboratory of Advanced Catalytic Materials, College of Chemical Engineering, Zhejiang University of TechnologySchool of Life Sciences, Huzhou University

【摘要】 By performing with density functional theory(DFT) method, the detailed adsorption process and the catalytic decarbonylation mechanisms of furfural over Pd(111) and M/Pd(111)(M = Ni, Cu, Ru) surfaces toward furan were clarified. The results of atomic size factor, formation energy and d-band center showed that Ru/Pd(111) surface was the most stable and active. The adsorption energies of furfural on the different surfaces followed the order Ru/Pd(111) > Cu/Pd(111) > Pd(111) > Ni/Pd(111). After analyzing Mulliken atomic charge population and the deformation density, we can find that on Ru/Pd(111) surface, the number of charge transfer was the most and the interaction was the strongest. Therefore, its adsorption energy was the highest. Furthermore, the furfural decarbonylation pathway is more kinetically feasible on bimetallic surface, and the reaction is the most likely to occur on Ru/Pd(111).

【Abstract】 By performing with density functional theory(DFT) method, the detailed adsorption process and the catalytic decarbonylation mechanisms of furfural over Pd(111) and M/Pd(111)(M = Ni, Cu, Ru) surfaces toward furan were clarified. The results of atomic size factor, formation energy and d-band center showed that Ru/Pd(111) surface was the most stable and active. The adsorption energies of furfural on the different surfaces followed the order Ru/Pd(111) > Cu/Pd(111) > Pd(111) > Ni/Pd(111). After analyzing Mulliken atomic charge population and the deformation density, we can find that on Ru/Pd(111) surface, the number of charge transfer was the most and the interaction was the strongest. Therefore, its adsorption energy was the highest. Furthermore, the furfural decarbonylation pathway is more kinetically feasible on bimetallic surface, and the reaction is the most likely to occur on Ru/Pd(111).

【基金】 supported by the National Natural Science Foundation of China(No.21503188)
  • 【文献出处】 Chinese Journal of Structural Chemistry ,结构化学(英文版) , 编辑部邮箱 ,2019年02期
  • 【分类号】O647.3
  • 【下载频次】31
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