4.8 Article

Experimental observation of quantum oscillation of surface chemical reactivities

Publisher

NATL ACAD SCIENCES
DOI: 10.1073/pnas.0611024104

Keywords

Pb(111); quantum size effects; scanning tunneling microscopy; surface reactivity

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Here we present direct observation of a quantum reactivity with respect to the amounts of O-2 adsorbed and the rates of surface oxidation as a function of film thickness on ultrathin (2-6 nm) Pb mesas by scanning tunneling microscopy. Simultaneous spectroscopic measurements on the electronic structures reveal a quantum oscillation that originates from quantum well states of the mesas, as a generalization of the Fabry-Perot modes of confined electron waves. We expect the quantum reactivity to be a general phenomenon for most ultrathin metal films with broad implications, such as nanostructure tuning of surface reactivities and rational design of heterogeneous catalysts.

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