In Situ, Real-Time Raman Microscopy of Embedded Single Particle Graphite Electrodes
- 1 January 2002
- journal article
- Published by The Electrochemical Society in Journal of the Electrochemical Society
- Vol. 149 (8) , A1100-A1105
- https://doi.org/10.1149/1.1492286
Abstract
Dynamic aspects of Li+Li+ intercalation-deintercalation into single KS-44 carbon particles (8-50 μm in diameter) embedded in thermally annealed Ni foils were examined in 1 M LiClO4,LiClO4, ethylene carbonate (EC), diethyl carbonate (DEC) (1:1 v/v) solutions by in situ, time-resolved Raman microscopy. A direct correlation was found between the position of the prominent G band, in the range 1581-1590 cm−1, and the amount of Li+Li+ in KS-44 within the so-called dilute stage 1 phase. This information was used to determine spectroscopically and in real time the average concentration of Li+Li+ within the volume of the particle probed by the laser beam following application of a potential step between 0.05 V vs. Li/Li+,Li/Li+, i.e., nominally full Li+Li+ intercalation and 0.7 V vs. Li/Li+,Li/Li+, i.e., full Li+Li+ deintercalation. Quantitative analysis of these transient data based on a spherical diffusion model yielded a time constant for Li+Li+ deintercalation for dilute stage 1 phase consistent with reported values of Li+Li+ diffusion coefficients within graphitic materials and the size of the particles probed. Single KS-44 particles cycled repeatedly into the deep Li+Li+ -intercalation region recorded at high potentials E>0.5VE>0.5V vs. Li/Li+,Li/Li+, displayed a new Raman band attributed to bounding graphite layers not observed for pristine KS-44 carbon under otherwise identical conditions. This new spectral feature has been tentatively associated with chemical modifications of the carbon itself which may be at least partially responsible for irreversible capacity losses. © 2002 The Electrochemical Society. All rights reserved.Keywords
This publication has 23 references indexed in Scilit:
- In Situ Raman Spectroscopy of Single Particle ElectrodesElectrochemical and Solid-State Letters, 2001
- Confocal Raman Microscopy: Why the Depth Resolution and Spatial Accuracy Can Be Much Worse Than You ThinkApplied Spectroscopy, 2000
- Modeling and Measuring the Effect of Refraction on the Depth Resolution of Confocal Raman MicroscopyApplied Spectroscopy, 2000
- In Situ Raman Microscopy of Chromate Effects on Corrosion Pits in Aluminum AlloyJournal of the Electrochemical Society, 1999
- Electrochemical and In Situ Raman Studies of Embedded Carbon Particle Electrodes in Nonaqueous Liquid ElectrolytesElectrochemical and Solid-State Letters, 1999
- Raman Spectroelectrochemistry of a Lithium/Polymer Electrolyte Symmetric CellJournal of the Electrochemical Society, 1998
- The mechanism of lithium intercalation in graphite film electrodes in aprotic media. Part 1. High resolution slow scan rate cyclic voltammetric studies and modelingJournal of Electroanalytical Chemistry, 1997
- Commercial Carbonaceous Materials as Lithium Intercalation AnodesJournal of the Electrochemical Society, 1995
- Mechanism Leading to Irreversible Capacity Loss in Li Ion Rechargeable BatteriesJournal of the Electrochemical Society, 1995
- In Situ Raman Study on Electrochemical Li Intercalation into GraphiteJournal of the Electrochemical Society, 1995