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Geometrical Structures and Electronic Properties of Copper-Doped Aluminum Clusters 被引量:2
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作者 xi-hui cheng Da-jun Ding +1 位作者 Yong-gang Yu Ming-xing Jin 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2012年第2期169-176,I0003,共9页
Using density function theory (DFT), the Cu-doped Aln (n=1-15) clusters have been stud- ied. The electron affinity, ionization potential, Mulliken population analysis of Cu, mean polarizability, polarizability ani... Using density function theory (DFT), the Cu-doped Aln (n=1-15) clusters have been stud- ied. The electron affinity, ionization potential, Mulliken population analysis of Cu, mean polarizability, polarizability anisotropy, dipole moments and HOMO-LUMO gaps have also been calculated on the basis of optimized geometries. The results indicate that there is magic numbers in copper-doped aluminum clusters and electronic characteristic depended on the size of clusters. As n=13, the electron affinity and ionization potential of cluster changed more than 0.3 and 0.6 eV respectively, compared with neighborhood clusters. 展开更多
关键词 Density function theory electronic properties Cu doped A1 clusters
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Adsorption Behavior of CH2 and CH3 on Metal Clusters CUn (n=1-6) 被引量:1
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作者 xi-hui cheng Ming-xing Jin +2 位作者 Zhan Hu Fei-fei Hu Da-jun Ding 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 北大核心 2008年第5期445-450,共6页
Using density functional theory with generalized gradient approximation and hybrid functional, we studied the properties of energy, charge population, and vibration of CH2 and CH3 adsorbed on Cun (n=1-6) clusters. T... Using density functional theory with generalized gradient approximation and hybrid functional, we studied the properties of energy, charge population, and vibration of CH2 and CH3 adsorbed on Cun (n=1-6) clusters. The results show that the DFT calculation with the hybrid functional matches the experimental results better in both cases. The calculation results indicate that the adsorption of CH2 is stronger than that of CH3. During adsorption, the charges transfer from Cu to CH2 or CH3. The obtained vibrational frequencies for different modes of CH2 and CH3 adsorbed on Cun agree well with the experimental results for the adsorption on Cu(111) surface. 展开更多
关键词 ADSORPTION CH2 CH3 Cu cluster
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