
Zhide Battery
High-energy-density silicon-carbon anode materials for lithium batteries.
Date | Investors | Amount | Round |
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N/A | €0.0 | round | |
investor | €0.0 | round | |
investor investor investor investor | €0.0 | round | |
* | CNY200m | Series D | |
Total Funding | 000k |
Lanxi Zhide New Energy Materials Co., Ltd., also known as Zhide Battery, is a Chinese company specializing in the research, development, production, and sale of materials for lithium-ion batteries. Founded in December 2018, the firm is headquartered in Jinhua, China. The company's focus is on creating high-energy-density battery components, specifically high-capacity silicon-carbon anode materials.
Zhide Battery's product lineup includes various grades of silicon-carbon anode materials, such as ZDS01, ZDS02, and ZDS03, designed to offer high capacity, efficiency, and charging rates. These materials are key components for manufacturers in the electric vehicle (EV), consumer electronics (3C), and general battery sectors. By developing silicon-carbon anodes, the company aims to enhance battery energy density, improve safety, and enable fast-charging capabilities. The business operates on a B2B model, supplying these advanced materials to battery manufacturers.
The company's development of silicon-carbon anodes began in 2016, prior to its official founding. A significant milestone was reached in July 2021, when its initial production phase for 500 tons of silicon-carbon anode material became operational. As of mid-2024, Zhide Battery has engaged in trials with nearly 30 domestic and international clients and is proceeding with a second-phase expansion to produce 3,000 tons. The company has successfully raised significant capital through multiple funding rounds, including a Series D round in July 2024 backed by investors like SAIC Motor-affiliated Shangqi Capital and Everest Venture Capital.
Keywords: silicon-carbon anode, lithium-ion battery materials, energy storage, high-energy-density batteries, EV batteries, consumer electronics components, battery technology, new energy materials, advanced materials, anode materials, battery manufacturing, climate tech, fast charging, nanofabrication, silicon anode