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双核金属酞菁的离散变分X_α法研究 被引量:1
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作者 陈彬 王芳 +1 位作者 傅强 刘景福 《分子科学学报》 CAS CSCD 1996年第4期289-292,共4页
运用离散变分X_α方法对双核金属酞菁(M=V^(2+)、Cr^(2+)、Mn^(2+)、Fe^(2+)、Co^(2+)、Ni^(2+)、Cu^(2+)、Zn^(2+)等)系列化合物进行了量子化学研究,得到了其费米能级。总态密... 运用离散变分X_α方法对双核金属酞菁(M=V^(2+)、Cr^(2+)、Mn^(2+)、Fe^(2+)、Co^(2+)、Ni^(2+)、Cu^(2+)、Zn^(2+)等)系列化合物进行了量子化学研究,得到了其费米能级。总态密度、前线轨道布居等,讨论了它们的催化活性。 展开更多
关键词 DV-X_α法 费米能级 总态密度 前线轨道布居分析
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Molecular Dynamics Insights into Electron-Catalyzed Dissociation Repair of Cyclobutane Pyrimidine Dimer
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作者 Liang Gao Yuxiang Bu 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2021年第6期850-860,I0004,共12页
Excess electrons are not only an important source of radiation damage,but also participate in the repair process of radiation damage such as cyclobutane pyrimidine dimer(CPD).Using ab initio molecular dynamics(AIMD)si... Excess electrons are not only an important source of radiation damage,but also participate in the repair process of radiation damage such as cyclobutane pyrimidine dimer(CPD).Using ab initio molecular dynamics(AIMD)simulations,we reproduce the single excess electron stepwise catalytic CPD dissociation process in detail with an emphasis on the energy levels and molecular structure details associated with excess electrons.On the basis of the AIMD simulations on the CPD aqueous solution with two vertically added excess electrons,we exclude the early-proposed[2+2]-like concerted synchronous dissociation mechanism,and analyze the difference between the symmetry of the actual reaction and the symmetry of the frontier molecular orbitals which deeply impact the mechanism.Importantly,we propose a new model of the stepwise electron-catalyzed dissociation mechanism that conforms to the reality.This work not only provides dynamics insights into the excess electron catalyzed dissociation mechanism,but also reveals different roles of two excess electrons in two bond-cleavage steps(promoting versus inhibiting). 展开更多
关键词 Excess electron Cyclobutane pyrimidine dimer Electron catalysis Frontier orbital analysis Ab initio molecular dynamics simulation
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