Graciani Jesús, Oviedo Jaime, Sanz Javier F
Departamento de Química Física, Facultad de Química, Universidad de Sevilla E-41012, Sevilla, Spain.
J Phys Chem B. 2006 Jun 15;110(23):11600-3. doi: 10.1021/jp057322f.
The catalytic properties toward CO combustion of an encapsulated cluster, V@Au12-, have been explored by means of plane-wave pseudopotential density-functional theory calculations. Single adsorption of both O2 and CO as well as coadsorption have been considered. The adsorption energy for the O2 molecule is about 0.3-0.4 eV which limits its use to low temperatures. However, in contrast to what happens for pure gold clusters, this system shows a remarkable capacity to bind a high number of oxygen molecules. Moreover, its icosahedral cluster is able to bind 12 CO molecules, since all of the gold atoms are available. The bond between the metal cluster and the oxygen molecule mainly arises from a charge transfer from the metal toward the pi(g) antibonding O2 orbitals, while in the case of CO molecule, the classical sigma-donation pi-back-donation mechanism is observed. Finally, no coadsorption effects are found when both molecules are adsorbed, the interaction properties between the cluster and the substrates remain basically unaltered.
通过平面波赝势密度泛函理论计算,研究了包封团簇V@Au12-对CO燃烧的催化性能。考虑了O2和CO的单吸附以及共吸附情况。O2分子的吸附能约为0.3 - 0.4 eV,这限制了其在低温下的应用。然而,与纯金团簇的情况不同,该体系显示出结合大量氧分子的显著能力。此外,其二十面体团簇能够结合12个CO分子,因为所有的金原子都可用于结合。金属团簇与氧分子之间的键主要源于从金属向π(g)反键O2轨道的电荷转移,而对于CO分子,观察到了经典的σ-给予-π-反馈机制。最后,当两种分子都被吸附时,未发现共吸附效应,团簇与底物之间的相互作用性质基本保持不变。