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Electrochemical determination of the lithium ion diffusion coefficient in TiS2
Authors:Anthony J. Vaccaro  T. Palanisamy  R.L. Kerr  J.T. Maloy
Affiliation:Department of Chemistry, West Virginia University, Morgantown, WV 26506, USA;University of Dayton Research Institute, Dayton, OH 45469, USA;AFWAL/POCC-1, Wright-Patterson AFB, OH 45433, USA;Department of Chemistry, Seton Hall University, South Orange, NJ 07079, USA
Abstract:Long-time chronoamperometry of TiS2 electrodes immersed in saturated LiClO4/DMF solution was employed to investigate the charge transport processes which govern the rate of Li+ intercalation in TiS2. The intercalation rate and hence, the current, appears to be controlled by the rate of Li+ diffusion within the TiS2. A model has been developed which predicts the current-time behavior under the control of Li+ solid state diffusion. The close agreement of this model with the experimental data allows the solid state diffusion coefficient and other transport parameters (such as effective electrode area) to be evaluated from the measured average grain boundary distance. Typical TiS2 grain boundary distances in the 3–10 μm range yield a geometric mean value of 1.3 × 10?9 cm2/s for the solid state diffusion coefficient; this is in close agreement with previously reported diffusivities as measured by NMR spin-lattice relaxation techniques.
Keywords:To whom correspondence should be addressed.
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