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Atomic Layer Deposition of Vanadium Dioxide and a Temperature-dependent Optical Model
Published on: May 23, 2018
Probing the structural and electronic properties of small vanadium dioxide clusters by density functional theory and
1College of Engineering, Huaqiao University, Quanzhou, 362021, China. hqwang@hqu.edu.cn
Abstract:
The structural evolution and bonding of a series of early transition-metal dioxide clusters, V(n)O(2)(q)(n = 3-9, q = 0, -1), have been investigated using density functional theory (DFT) calculations and the results are compared with experimental literature data. For each vanadium dioxide cluster, many low-lying isomers are generated using the Saunders "Kick" global minimum stochastic search method. Theoretical electron detachment energies (both vertical and adiabatic) were compared with the experimental measurements to verify the ground states of the vanadium dioxide clusters obtained from the DFT calculations. Five kinds of dissociative adsorption configurations of ground-state structure of V(n)O(2)(q) are identified. The dissociative adsorption of O(2) on V(n)(-1, 0) is more favorable than O(2) molecular adsorption. Furthermore, the adsorption energy of O(2) is higher than that of a single atom on the bare V(n)(-1, 0) clusters, but less than twice the adsorption energy for an atom, indicating that O(2) being adsorbed on vanadium clusters are more difficult than single O atom adsorbed on vanadium clusters.
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