Hagen Jan, Socaciu Liana D, Le Roux Jérôme, Popolan Denisia, Bernhardt Thorsten M, Wöste Ludger, Mitrić Roland, Noack Holger, Bonacić-Koutecký Vlasta
Institut für Experimentalphysik, Freie Universität Berlin, Arnimallee 14, D-14195 Berlin, Germany.
J Am Chem Soc. 2004 Mar 24;126(11):3442-3. doi: 10.1021/ja038948r.
A novel size dependence in the adsorption reaction of multiple O2 molecules onto anionic silver clusters Agn- (n = 1-5) is revealed by gas-phase reaction studies in an rf-ion trap. Ab initio theoretical modeling based on DFT method provides insight into the reaction mechanism and finds cooperative electronic and structural effects to be responsible for the size selective reactivity of Agn- clusters toward one or more O2. In particular, Agn- clusters with odd n have paired electrons and therefore bind one O2 only weakly, but they are simultaneously activated to adsorb a strongly bound second oxygen molecule. For the clusters Ag3O4- and Ag5O4-, this cooperative effect results in a superoxo-like, doubly bound O2 subunit with potentially high activity in catalytic silver cluster oxidation processes.
通过射频离子阱中的气相反应研究,揭示了多个O₂分子在阴离子银簇Agn⁻(n = 1 - 5)上吸附反应中一种新的尺寸依赖性。基于密度泛函理论(DFT)方法的从头算理论建模深入了解了反应机理,并发现协同电子和结构效应是Agn⁻簇对一个或多个O₂具有尺寸选择性反应性的原因。特别是,n为奇数的Agn⁻簇具有成对电子,因此仅微弱地结合一个O₂,但它们同时被激活以吸附一个强结合的第二个氧分子。对于Ag₃O₄⁻和Ag₅O₄⁻簇,这种协同效应导致形成类似超氧的、具有双配位的O₂亚基,在催化银簇氧化过程中可能具有高活性。