Electron microscopy and spectroscopic study of structural changes, electronic properties and conductivity in annealed Li$_x$CoO$_2$
Halyna Volkova, Kevin Pachuta, Kyle Crowley, Santosh Kumar Radha,, Emily Pentzer, Xuan P.A. Gao, Walter R. L. Lambrecht, Alp Sehirlioglu,, Marie-H\'el\`ene Berger

TL;DR
This study investigates how annealing affects the structural, electronic, and conductive properties of nanoscale Li$_x$CoO$_2$, revealing phase transitions, disordering effects, and their impact on conductivity through microscopy, spectroscopy, and theoretical calculations.
Contribution
It provides a comprehensive analysis combining TEM, EELS, and DFT calculations to understand phase changes and electronic structure evolution in annealed Li$_x$CoO$_2$.
Findings
Sequential phase transformations with temperature increase.
Disordering of Li and Co cations affects band gap and conductivity.
Loss of Li in high-temperature phases indicated by spectra and calculations.
Abstract
Chemically exfoliated nanoscale few-layer thin LiCoO samples are studied as function of annealing at various temperatures, using transmission electron microscopy (TEM) and Electron Energy Loss Spectroscopies (EELS), probing the O-K, Co-L spectra along with low energy interband transitions. These spectra are compared with first-principles DFT calculations of -Im and O-2p Partial Densities of States weighted by dipole matrix elements with the core wavefunction and including the O-1s core-hole and with known trends of the L/L peak ratio to average Co valence. Trends in these spectra under the annealing procedures are established and correlated with the structural phase changes observed from diffraction TEM and High Resolution TEM images. The results are also correlated with conductivity measurements on samples subjected to the same…
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