全固态电池用超高容量富锂锰基材料
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当升科技(300073):正极材料出货持续提升 固态电池材料布局快速推进
Xin Lang Cai Jing· 2025-10-29 00:40
Core Insights - The company reported a net profit attributable to shareholders of 192 million yuan in Q3 2025, representing an 8% year-on-year increase [1] - For the first three quarters of 2025, the company achieved revenue of 7.399 billion yuan, a 34% year-on-year increase, and a net profit of 503 million yuan, also up 8% year-on-year [1] - The company’s ternary cathode sales increased significantly, with an estimated sales volume of nearly 15,000 tons in Q3 2025, reflecting over a 50% year-on-year growth [1] Group 1: Ternary Cathode Performance - In Q3 2025, the company’s ternary cathode revenue reached 2.967 billion yuan, a 50% year-on-year increase and an 18% quarter-on-quarter increase [1] - The net profit per ton for ternary cathodes was approximately 10,000 yuan, showing a decline due to changes in domestic and international shipment structures [1] - The company has signed supply agreements with clients such as SK On and LG Energy, indicating deepening customer relationships [1] Group 2: Phosphate Cathode Growth - The company’s phosphate cathode sales reached nearly 23,000 tons in Q3 2025, with a 14% quarter-on-quarter growth, marking a turnaround to profitability [2] - High capacity utilization and cost control have contributed to the business scale advantages in phosphate cathodes [2] - The company is expanding its production capacity, with the first phase of the Panzhihua project expected to produce 120,000 tons annually, enhancing customer assurance capabilities [2] Group 3: Solid-State Battery Materials - The company is actively developing solid-state battery materials, having shipped over 1,000 tons of semi-solid battery cathode materials [2] - The company has achieved batch supply of over 20 tons for ultra-high nickel multi-materials and ultra-high capacity lithium-rich manganese-based materials for all-solid-state batteries [2] - A new type of solid-state electrolyte has been developed, which significantly reduces the pressure on all-solid-state batteries and addresses solid-solid interface contact issues [2]