Wu Guangfen, Wang Jinlan, Lu Yiming, Yang Mingli
Department of Physics, Southeast University, Nanjing, 211189, People's Republic of China.
J Chem Phys. 2008 Jun 14;128(22):224315. doi: 10.1063/1.2938377.
The adsorption properties of a single CO molecule on Sc(n) (n=2-13) clusters are studied by means of a density functional theory with the generalized gradient approximation. Two adsorption patterns are identified. Pattern a (n=3, 4, 6, 8, 11, and 12), CO binds to hollow site while Pattern b (n=5, 7, 9, 10, and 13), CO binds to bridge site accompanied by significantly lengthening of the Sc-Sc bond. The adsorption energy exhibits clear size-dependent variation and odd-even oscillation for n<10 and reach the peak at n=5, 7, and 9, implying their high chemical reactivity. Similar variations are noted in C-O bond length, vibrational frequency, and charge transferred between CO and the clusters. This can be understood in light of the adsorption pattern, the atomic motif, and the relative stability of the bare Sc clusters. Compared with the free Sc clusters, the magnetic nature remains upon adsorption except n=2, 4, 12, and 13. Particularly, the moments of n=13 reduce significantly from 19 to 5 micro(B), implying the adsorption plays an attenuation influence on the magnetism of the cluster.
采用广义梯度近似的密度泛函理论研究了单个CO分子在Sc(n)(n = 2 - 13)团簇上的吸附特性。确定了两种吸附模式。模式a(n = 3、4、6、8、11和12),CO吸附在空心位;而模式b(n = 5、7、9、10和13),CO吸附在桥位,同时伴随着Sc - Sc键的显著伸长。吸附能表现出明显的尺寸依赖性变化以及n < 10时的奇偶振荡,并在n = 5、7和9时达到峰值,这意味着它们具有高化学反应活性。在C - O键长、振动频率以及CO与团簇之间转移的电荷方面也观察到类似的变化。这可以根据吸附模式、原子结构单元以及裸Sc团簇的相对稳定性来理解。与自由Sc团簇相比,除了n = 2、4、12和13外,吸附后磁性仍然存在。特别地,n = 13的磁矩从19显著降低到5微玻尔磁子,这意味着吸附对团簇的磁性有衰减影响。