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First-principles study of the adsorption behaviors of Li atoms and LiF on the CF (x = 1.0, 0.9, 0.8, 0.5, ∼0.0)
Rujing Fan1, Biao Yang1, Zhiwei Li1
1Institute of Atomic and Molecular Physics, Sichuan University Chengdu Sichuan 610065 China majianyi81@163.com.
Abstract:
Based on first principles calculation, the adsorption properties of Li atoms and LiF molecules on the fluorographene (CF ) surface with different F/C ratios (x = 1.0, 0.9, 0.8, 0.5 and ∼0.0) have been studied in the present work. The calculated binding energy of Li and CF is greater than 2.29 eV under different F/C ratios, indicating that the battery has the potential to maintain a high discharge platform during the whole discharge process. But the adsorption energies of LiF on a CF layer for different F/C ratios are 0.12-1.04 eV, which means LiF is not easy to desorb from a CF surface even at room temperature. It will stay on the surface for a long time and affect the subsequent discharge. Current calculations also show the structure of the CF -skeleton will change greatly during the reaction, when there are many unsaturated carbon atoms on the CF surface, such as at x = 0.8 and 0.5. Moreover, the discharge voltage is strongly dependent on the discharge site. After discharge, the CF -skeleton may continue to relax and release a lot of heat energy.
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