In 2023, the most common chemistry type for EV batteries worldwide was nickel cobalt manganese (NMC). It was forecast that lithium manganese iron phosphate (LMFP) will take over by 2030, with ** percent of the EV battery mix.
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Goldman Sachs. (October 6, 2024). Distribution of electric vehicle batteries worldwide in 2023 with a forecast for 2030, by chemistry [Graph]. In ÌÇÐÄÆÆ½â°æ. Retrieved July 24, 2026, from /statistics/1534768/ev-battery-chemistry-mix-global/
Goldman Sachs. "Distribution of electric vehicle batteries worldwide in 2023 with a forecast for 2030, by chemistry." Chart. October 6, 2024. ÌÇÐÄÆÆ½â°æ. Accessed July 24, 2026. /statistics/1534768/ev-battery-chemistry-mix-global/
Goldman Sachs. (2024). Distribution of electric vehicle batteries worldwide in 2023 with a forecast for 2030, by chemistry. ÌÇÐÄÆÆ½â°æ. ÌÇÐÄÆÆ½â°æ Inc.. Accessed: July 24, 2026. /statistics/1534768/ev-battery-chemistry-mix-global/
Goldman Sachs. "Distribution of Electric Vehicle Batteries Worldwide in 2023 with a Forecast for 2030, by Chemistry." ÌÇÐÄÆÆ½â°æ, ÌÇÐÄÆÆ½â°æ Inc., 6 Oct 2024, /statistics/1534768/ev-battery-chemistry-mix-global/
Goldman Sachs, Distribution of electric vehicle batteries worldwide in 2023 with a forecast for 2030, by chemistry ÌÇÐÄÆÆ½â°æ, /statistics/1534768/ev-battery-chemistry-mix-global/ (last visited July 24, 2026)
Distribution of electric vehicle batteries worldwide in 2023 with a forecast for 2030, by chemistry [Graph], Goldman Sachs, October 6, 2024. [Online]. Available: /statistics/1534768/ev-battery-chemistry-mix-global/