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Hydrogen evolution reaction of Ben + H2O (n = 5-9) based on density functional theory.
Diao, Kai; Shi, Shunping; Song, Yong; Tang, Leilei; Hu, Jiabao; Jiang, Jing; Duan, Zhanjiang; Chen, Deliang.
Afiliación
  • Diao K; College of Mathematics and Physics, Chengdu University of Technology, Chengdu 610059, China. shishunping13@cdut.edu.cn.
  • Shi S; College of Mathematics and Physics, Chengdu University of Technology, Chengdu 610059, China. shishunping13@cdut.edu.cn.
  • Song Y; College of Mathematics and Physics, Chengdu University of Technology, Chengdu 610059, China. shishunping13@cdut.edu.cn.
  • Tang L; College of Mathematics and Physics, Chengdu University of Technology, Chengdu 610059, China. shishunping13@cdut.edu.cn.
  • Hu J; College of Mathematics and Physics, Chengdu University of Technology, Chengdu 610059, China. shishunping13@cdut.edu.cn.
  • Jiang J; College of Mathematics and Physics, Chengdu University of Technology, Chengdu 610059, China. shishunping13@cdut.edu.cn.
  • Duan Z; College of Mathematics and Physics, Chengdu University of Technology, Chengdu 610059, China. shishunping13@cdut.edu.cn.
  • Chen D; School of Physics and Electronic, Guizhou Education University, Guiyang 550018, China.
Phys Chem Chem Phys ; 25(1): 570-579, 2022 Dec 21.
Article en En | MEDLINE | ID: mdl-36484159
ABSTRACT
The structural evolution of Ben clusters with n = 5-9, the adsorption energy created by the Ben@H2O (n = 5-9) complex, and the mechanism of the hydrogen evolution reaction of Ben + H2O (n = 5-9) were all studied using DFT calculations based on the PBE0-D3/Def2TZVP level. Excluding the Be7 cluster, the global minimum structures of beryllium clusters with n = 5-9 showed a higher point group pair formation. Be7 clusters' high point group symmetry is unstable. Be9@H2O released the greatest energy during the complex's creation (-1.45 eV). Exothermic hydrogen evolution occurs in Ben + H2O (n = 5-9), and all transition states, intermediate stages, and products have energies lower than the equilibrium constant (EC). More energy is released when an O-H bond in the Ben@H2O (n = 5-9) complex is broken, and the energy release results in a change in the cluster structure, which is more pronounced in the Be7 + H2O reaction. Interestingly, there are eight transition states in the Be6 + H2O hydrogen evolution reaction, with the second O-H bond break requiring more energy than the first. There are only three transition states in the Be8 + H2O hydrogen evolution reaction, and the reaction energy is the greatest (-4.13 eV).

Texto completo: 1 Base de datos: MEDLINE Idioma: En Revista: Phys Chem Chem Phys Asunto de la revista: BIOFISICA / QUIMICA Año: 2022 Tipo del documento: Article

Texto completo: 1 Base de datos: MEDLINE Idioma: En Revista: Phys Chem Chem Phys Asunto de la revista: BIOFISICA / QUIMICA Año: 2022 Tipo del documento: Article