Graphites for Lithium‐Ion Cells: The Correlation of the First‐Cycle Charge Loss with the Brunauer‐Emmett‐Teller Surface Area
Графиты для литий-ионных ячеек: корреляция потерь заряда в первом цикле с удельной поверхностью по Брунауэру—Эмметту—Теллеру
1998-02-01
SCID: 54.1/xh7z9sd2
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Brunauer-Emmett-Teller surface areagraphite electrodesirreversible first-cycle charge losslithium-ion cellsprismatic and basal surfaces
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Abstract (AI)
We have investigated the correlation of the irreversible charge loss during the first lithium intercalation into graphite electrodes with the Brunauer‐Emmett‐Teller (BET) specific surface area of Timrex graphites. The irreversible charge loss typically increases with a higher BET specific surface area but also depends strongly on the graphite type. We have found that not only the total external surface area but also the ratio between the prismatic and basal surfaces affects the irreversible charge loss. The latter effect occurs because particular reactions associated with charge losses such as solvated lithium intercalation or "self‐discharge" of intercalated lithium (reaction of with electrolyte components) take place only via/on the prismatic surfaces. The influence of the prismatic and basal surfaces is not taken into account if the irreversible charge losses are correlated only with the entire BET specific surface area of the samples. In order to describe the surface‐dependent irreversible charge loss behavior of graphite we developed simple models that, in addition to the BET specific surface area, also take into account particle size distribution and particle morphology.
Key Findings
1
Correlating charge loss solely with total BET surface area overlooks the distinct contributions of prismatic and basal surfaces.
2
Irreversible first-cycle charge loss generally increases with the BET specific surface area of Timrex graphite electrodes, but depends strongly on graphite type.
3
Solvated lithium intercalation and electrolyte-induced self-discharge occur specifically via or on prismatic surfaces, causing surface-orientation-dependent charge losses.
4
The authors developed models incorporating BET surface area, particle-size distribution, and particle morphology to describe graphite’s surface-dependent irreversible charge loss.
5
The ratio of prismatic to basal graphite surfaces influences irreversible charge loss in addition to total external surface area.
Research Object
Timrex graphite electrodes during first lithium intercalation in lithium-ion cells
Research Subject
The dependence and mechanistic origins of irreversible first-cycle charge loss on BET specific surface area, particle size distribution, and the ratio of prismatic to basal graphite surfaces
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1998-02-01
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