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Published on: June 16, 2014
Size-dependent carbon monoxide adsorption on neutral gold clusters.
N Veldeman1, P Lievens, M Andersson
1Laboratorium voor Vaste-Stoffysica en Magnetisme, K.U.Leuven, Celestijnenlaan 200D, B-3001 Leuven, Belgium.
Cooling gold clusters (Au(n)) significantly enhances their reactivity with carbon monoxide (CO). Lower temperatures allow gold clusters to adsorb more CO molecules, revealing size-dependent electronic effects.
Area of Science:
- Physical Chemistry
- Materials Science
- Surface Science
Background:
- Understanding the reactivity of metal clusters is crucial for catalysis and materials design.
- Gold clusters (Au(n)) exhibit unique properties influenced by size and electronic structure.
- Carbon monoxide (CO) adsorption is a fundamental probe of cluster surface chemistry.
Purpose of the Study:
- To investigate the reactivity of neutral gold clusters (Au(n), n = 9-68) with carbon monoxide (CO).
- To determine the influence of temperature (room temperature vs. liquid-nitrogen temperature) on cluster reactivity.
- To explore the size-dependent adsorption behavior of CO on gold clusters.
Main Methods:
- Production of neutral gold clusters using pulsed laser vaporization.
- Controlled reaction of clusters with CO in a low-pressure cell.
- Laser ionization and mass analysis using time-of-flight mass spectrometry to determine reaction probabilities.
Main Results:
- Reactivity of Au(n) clusters with CO shows strong temperature dependence.
- Cooling clusters to liquid-nitrogen temperature (LNT) increases reactivity by a factor of ~10 compared to room temperature (RT).
- Cold clusters adsorb multiple CO molecules (2-4), while RT clusters adsorb at most one; size dependence is consistent across temperatures.
Conclusions:
- Cluster temperature significantly impacts CO adsorption lifetime and reactivity.
- Electronic structure effects play a key role in the observed size-dependent reactivity of gold clusters.
- Tailoring cluster temperature offers a route to control reactivity for potential applications.
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