高级检索

留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

镎氧化物分子结构和光谱的理论研究

武芳线 杜磊强 董晨钟 王永成

武芳线, 杜磊强, 董晨钟, 王永成. 镎氧化物分子结构和光谱的理论研究[J]. 原子核物理评论, 2014, 31(1): 75-80. doi: 10.11804/NuclPhysRev.31.01.075
引用本文: 武芳线, 杜磊强, 董晨钟, 王永成. 镎氧化物分子结构和光谱的理论研究[J]. 原子核物理评论, 2014, 31(1): 75-80. doi: 10.11804/NuclPhysRev.31.01.075
WU Fangxian, DU Leiqiang, DONG Chenzhong, WANG Yongcheng. Theoretical Study on Molecular Structure and Spectrum of Neptunium Oxides[J]. Nuclear Physics Review, 2014, 31(1): 75-80. doi: 10.11804/NuclPhysRev.31.01.075
Citation: WU Fangxian, DU Leiqiang, DONG Chenzhong, WANG Yongcheng. Theoretical Study on Molecular Structure and Spectrum of Neptunium Oxides[J]. Nuclear Physics Review, 2014, 31(1): 75-80. doi: 10.11804/NuclPhysRev.31.01.075

镎氧化物分子结构和光谱的理论研究

doi: 10.11804/NuclPhysRev.31.01.075

Theoretical Study on Molecular Structure and Spectrum of Neptunium Oxides

  • 摘要: 运用密度泛函理论(DFT) 的B3LYP方法,优化了NpO,NpO2,NpO3 和Np2O3 分子的几何构型,分析了电子从Np 到O的转移情况。结果表明:NpO,NpO2,NpO3 和NNp2O3的自旋多重度分别为6,2,2 和9,对称性分别为Cv,Dh,Cv 和Dh 时相应分子处于稳定结构;对所有分子而言,分子能级在􀀀50 eV 左右的态主要由Np-6s 轨道形成,在􀀀20 eV 附近的态主要由Np-6p 和O-2s 轨道混合组成,而大于􀀀11 eV 的态主要由Np-5f 和O-2p 轨道混合组成。同时,根据相关计算给出了分子基态结构的振动频率和光谱数据,并对红外光谱最大峰值的振动模式进行了指认。The NpO, NpO2, NpO3 and Np2O3 molecules geometric configurations have been optimized by using the B3LYP method of density functional theory (DFT), and the information of the electron transfers from Np to O atoms has also been analyzed. The results show that NpO, NpO2, NpO3 and Np2O3 molecules stay in the stable structure when their spin multiplicities are 6, 2, 2 and 9, and symmetries are C∞v, D∞h, C2v and D3h, respectively; For all molecules, molecular orbitals were formed from Np-6s orbital when energy near 50 eV, formed from Np-6p mixture with O-2s orbitals when the energy near 20 eV, and formed from Np-5f mixture with O-2p orbitals when the energy greater than 11 eV. Meanwhile, the vibrational frequencies and spectral data of the ground state structure have been given. We also identified vibrational modes corresponding to the maximal peaks of infrared spectrum.
  • 加载中
计量
  • 文章访问数:  2197
  • HTML全文浏览量:  232
  • PDF下载量:  1167
  • 被引次数: 0
出版历程
  • 收稿日期:  1900-01-01
  • 修回日期:  1900-01-01
  • 刊出日期:  2014-03-20

镎氧化物分子结构和光谱的理论研究

doi: 10.11804/NuclPhysRev.31.01.075

摘要: 运用密度泛函理论(DFT) 的B3LYP方法,优化了NpO,NpO2,NpO3 和Np2O3 分子的几何构型,分析了电子从Np 到O的转移情况。结果表明:NpO,NpO2,NpO3 和NNp2O3的自旋多重度分别为6,2,2 和9,对称性分别为Cv,Dh,Cv 和Dh 时相应分子处于稳定结构;对所有分子而言,分子能级在􀀀50 eV 左右的态主要由Np-6s 轨道形成,在􀀀20 eV 附近的态主要由Np-6p 和O-2s 轨道混合组成,而大于􀀀11 eV 的态主要由Np-5f 和O-2p 轨道混合组成。同时,根据相关计算给出了分子基态结构的振动频率和光谱数据,并对红外光谱最大峰值的振动模式进行了指认。The NpO, NpO2, NpO3 and Np2O3 molecules geometric configurations have been optimized by using the B3LYP method of density functional theory (DFT), and the information of the electron transfers from Np to O atoms has also been analyzed. The results show that NpO, NpO2, NpO3 and Np2O3 molecules stay in the stable structure when their spin multiplicities are 6, 2, 2 and 9, and symmetries are C∞v, D∞h, C2v and D3h, respectively; For all molecules, molecular orbitals were formed from Np-6s orbital when energy near 50 eV, formed from Np-6p mixture with O-2s orbitals when the energy near 20 eV, and formed from Np-5f mixture with O-2p orbitals when the energy greater than 11 eV. Meanwhile, the vibrational frequencies and spectral data of the ground state structure have been given. We also identified vibrational modes corresponding to the maximal peaks of infrared spectrum.

English Abstract

武芳线, 杜磊强, 董晨钟, 王永成. 镎氧化物分子结构和光谱的理论研究[J]. 原子核物理评论, 2014, 31(1): 75-80. doi: 10.11804/NuclPhysRev.31.01.075
引用本文: 武芳线, 杜磊强, 董晨钟, 王永成. 镎氧化物分子结构和光谱的理论研究[J]. 原子核物理评论, 2014, 31(1): 75-80. doi: 10.11804/NuclPhysRev.31.01.075
WU Fangxian, DU Leiqiang, DONG Chenzhong, WANG Yongcheng. Theoretical Study on Molecular Structure and Spectrum of Neptunium Oxides[J]. Nuclear Physics Review, 2014, 31(1): 75-80. doi: 10.11804/NuclPhysRev.31.01.075
Citation: WU Fangxian, DU Leiqiang, DONG Chenzhong, WANG Yongcheng. Theoretical Study on Molecular Structure and Spectrum of Neptunium Oxides[J]. Nuclear Physics Review, 2014, 31(1): 75-80. doi: 10.11804/NuclPhysRev.31.01.075

目录

    /

    返回文章
    返回