The mode specific dissociative chemisorption dynamics of ammonia on the Ru(0001) surface is investigated using a quasi-classical trajectory (QCT) method on a new global potential energy surface (PES) with twelve dimensions. The PES is constructed by fitting 92524 density functional theory points using the permutation invariant polynomial-neural network method, which rigorously enforces the permutation symmetry of the three hydrogen atoms as well as the surface periodicity. The PES enables highly efficient QCT simulations as well as future quantum dynamical studies of the scattering/dissociation dynamics. The QCT calculations yield satisfactory agreement with experiment and suggest strong mode specificity, in general agreement with the predictions of the Sudden Vector Projection model.
@article{arxiv.1805.00622,
title = {Mode-Specific Dynamics of Ammonia Dissociative Chemisorption on Ru(0001)},
author = {Xixi Hu and Minghui Yang and Daiqian Xie and Hua Guo},
journal= {arXiv preprint arXiv:1805.00622},
year = {2018}
}