LG Energy Solution excludes LG Chem from Tesla battery materials

LG Energy Solution has decided not to use cathode materials from affiliate LG Chem in batteries supplied to Tesla due to unmet high energy density standards. Instead, the company is turning to competitor L&F to meet Tesla's demands for ultra-high nickel batteries. This shift highlights intensifying competition in the battery materials market amid a temporary electric vehicle demand slump.

LG Energy Solution, a major battery supplier, has excluded cathode materials from its affiliate LG Chem for batteries destined for Tesla vehicles and the Optimus humanoid robot. The decision stems from LG Chem's failure to meet Tesla's specifications for ultra-high nickel content, specifically 95% nickel, which offers over 20% higher energy density than existing 90% nickel products.

Tesla is accelerating the adoption of these advanced batteries across its lineup, starting with the new Model Y Long Range and Cybertruck, and extending to all models including premium ones like Model S and X. The company aims to improve driving range, output, and cost efficiency while reducing fire risks through advanced mass production techniques such as single crystal processing. Since the second half of last year, LG Energy Solution has been using cathode materials solely from L&F in its Tesla-supplied batteries, particularly for ultra-high nickel NCM ternary batteries.

A battery materials industry official stated, "Automakers urgently needing breakthroughs in performance and price are demanding technology at the limit level." Another official added, "Battery manufacturers also cannot afford the luxury of ‘taking care of affiliates.'"

This exclusion poses challenges for LG Chem, where Tesla-related volumes account for 30-40% of its total cathode materials shipments, estimated at 60,000-70,000 tons annually. Shipments could halve to below 30,000 tons this year, exacerbated by other automakers scaling back electric vehicle production. L&F, having invested preemptively in the technology, is expected to post an operating profit of around 120 billion won this year.

The shift underscores a ruthless survival competition in the battery sector, where even affiliate relationships yield to performance and price demands. Tesla's standards are influencing global automakers to adopt similar dual-track strategies, using ultra-high nickel for premium models and LFP for others, further intensifying the materials innovation race.

ተያያዥ ጽሁፎች

Chinese scientists showcase breakthrough fluorinated electrolyte lithium battery achieving 700 Wh/kg density and -70°C operation, promising 1,000 km EV ranges.
በ AI የተሰራ ምስል

Chinese fluorinated electrolyte doubles lithium battery energy density, operates at -70°C

በAI የተዘገበ በ AI የተሰራ ምስል

A joint research team from Nankai University (Tianjin) and the Shanghai Institute of Space Power-Sources has developed a hydrofluorocarbon-based electrolyte for lithium-metal batteries, achieving up to 700 Wh/kg energy density at room temperature—more than double traditional electrolytes—and stable operation down to minus 70°C. Published in Nature on February 27, 2026, the breakthrough promises to double electric vehicle ranges to 1,000 km and has applications in aerospace.

The U.S. government has officially announced an agreement between Tesla and LG Energy to construct a $4.3 billion lithium iron phosphate (LFP) prismatic battery cell factory in Lansing, Michigan, with production starting in 2027. These American-made cells will power Tesla's Megapack 3 energy storage systems produced in Houston, bolstering the domestic supply chain.

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LG Energy Solution swung to a first-quarter net loss due to weakening global electric vehicle battery demand. The company reported a 944 billion won ($635.8 million) loss, reversing a profit from a year earlier. It plans to expand its energy storage system business for a more balanced portfolio.

Samsung Electro-Mechanics has agreed to a major supply deal with Tesla. The agreement involves FC BGA components worth 16.5 billion dollars for AI6 chips. These chips will support Tesla's self-driving systems and Optimus robot projects.

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Sibanye-Stillwater's Keliber lithium project in Finland has entered production after three years of construction costing over €780 million. The site produces Europe's first domestic battery-grade lithium hydroxide for electric vehicle batteries. CEO Richard Stewart highlighted the company's strategic focus on battery metals during a presentation in Helsinki on April 20, 2026.

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