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DFT Study on Nano Structures of Sn/CNT Complex for Potential Li-Ion Battery Application
Journal article   Peer reviewed

DFT Study on Nano Structures of Sn/CNT Complex for Potential Li-Ion Battery Application

J. W. Zheng, S. M. L. Nai, M. -F. Ng, P. Wu, J. Wei and M. Gupta
Journal of physical chemistry. C, Vol.113(31), pp.14015-14019
06/08/2009

Abstract

Chemistry Chemistry, Physical Materials Science Materials Science, Multidisciplinary Nanoscience & Nanotechnology Physical Sciences Science & Technology Science & Technology - Other Topics Technology
From first principles calculations, We investigate the adsorption of a number of Sn structures (a single atom, a cluster, and an atomic wire) on the inner and outer surfaces of single-walled carbon nanotubes (CNTs); with an interest in the potential applications of these systems to Li-ion batteries. We find that Sn clusters have a much weaker interaction with the CNTs than single Sn atoms and that the interaction of Sn with the outer surface of the CNT is about 2-3 times greater than with the inner surface. The Sn atomic wire is stable inside zigzag (n, 0) CNTs, when n is greater than 10; moreover, we find that the adsorption energy reaches a maximum (-0.19 eV) at n = 14 or 15. Our simulation results explain well experimental observations and suggest that CNT-encapsulated Sn is a potential anode material for Li-ion batteries, with the ability to withstand the huge volume changes that occur upon So alloying with Li.

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