Computational Studies of Transition Metal Nanoalloys, 2011
Springer Theses Series

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Language: English

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Computational Studies of Transition Metal Nanoalloys
Publication date:
156 p. · 15.5x23.5 cm · Paperback

Approximative price 105.49 €

In Print (Delivery period: 15 days).

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Computational studies of transition metal nanoalloys (series: springer theses)
Publication date:
156 p. · 15.5x23.5 cm · Hardback
The focus of this thesis is the computational modelling of transition metal bimetallic (nanoalloy) clusters. More specifically, the study of Pd-Pt, Ag-Pt, Au-Au and Pd-Au as a few tens of atoms in the gas phase. The author used a combination of global optimization techniques - coupled with a Gupta-type empirical many-body potential - and Density Functional Theory (DFT) calculations to study the structures, bonding and chemical ordering, as well as investigate the chemisorptions of hydrogen and carbon monoxide on bimetallic clusters. This research is highly relevant to experimental catalytic studies and has resulted in more than seven publications in international journals.
Introduction.- Theoretical Background and Methodology.- 34-atom Pd-Pt Clusters.- 98 atom Pd-Pt nanoalloys.- 38-atom binary clusters.- Chemical ordering of 34-atom Pd-Pt nanoalloys.- Theoretical study of Pd-Au clusters.- Chemisorption on metal clusters and nanoalloys.- Conclusions and Future Work.

Nominated by the University of Birmingham, UK for a Springer Theses Prize

Results are relevant for theoretical and experimental studies of nanoalloy cluster structure and heterogeneous catalysis by bimetallic nanoparticles

The research is also applicable in technological applications of nanoalloys, such as in sensors, optics and magnetics.

Includes supplementary material: sn.pub/extras