Electric Vehicle Battery Degradation

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Electric vehicle battery degradation / deterioration is the gradual loss of battery capacity over time. The primary causes are time passing and the nature of lithium-ion chemistry. There is a sharper dip in capacity in the beginning, after which the rate of loss is slower and steadier.

Early forecasts of electric vehicle calendar life, assumed the rate of dip in the beginning would continue. This created the impression that electric vehicles were bad investments. This has not proved true, as a report by GeoLab confirms in a link below.

Key Insights Into Electric Vehicle Battery Degradation

GeoLab analyzed battery degradation in more than 22,700 electric vehicles during 2025, including 21 different models. They concluded that electric vehicle batteries should outlast the vehicle’s service life, as follows:

  • The average electric vehicle battery degradation rate is 2.3% overall.
  • High power fast DC charging (>100kW) degrades batteries at 3.0%.
  • But the rate is 1.5% in the case of conventional low power charging.
  • Vehicle batteries operating under hot conditions degrade 0.4% faster.

GeoLab notes that these deterioration rates are higher with frequently used vehicles, although better ROI returns could offset this.

High and low states of charge therefore have less effect than early predictions. GeoLab found that these really only impact electric vehicle battery degradation, when batteries are almost full or almost empty 80% of the time.

More Detail in This Battery Degradation Update

Thus far we have summarized the average trends in GeoLab’s report. Here are a few interesting details to round off our summary:

  • Light electric car batteries degrade at an average 2.0%. Whereas multi-purpose vehicles lose 2.7% capacity annually. This difference may be due to their chemistries targeting energy density, as opposed to calendar life.
  • Many electric vehicle batteries display a sharp drop in capacity in the first one-to-two years, before this levels out. The current data includes a higher proportion of new electric vehicles.

However, and this is intriguing, vehicles in Geolab’s 2023 data set have an average deterioration rate of just 1.4%. This suggests electric vehicle battery degradation is slower than we may have previously expected.

More Information

Degradation Drivers in Lithium-Ion Batteries

Lithium Nickel Oxide Degradation Discovery

Preview Image: Models of Battery Degradation

Report by Geolab January 12, 2026

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I have been writing about batteries and energy storage for more than ten years, and have published over 4,000 articles on this website. During that time, I have researched developments across lead-acid, lithium-ion, sodium-ion, flow batteries, and emerging energy-storage technologies. My goal is to explain complex battery concepts in clear, practical language that anyone can understand. My writing career began unexpectedly after leaving the corporate world. What started as a search for a new direction gradually became a fascination with batteries, renewable energy, and the science that powers modern life. Writing may not have made me wealthy, but it has given me the opportunity to explore an industry that continues to evolve in remarkable ways.

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