Nissan and LiCAP Innovate Battery Production

Nissan partners with LiCAP Technologies to develop cost-effective, sustainable dry electrode production for all-solid-state batteries, aiming for high-performance EV batteries by 2028.

Nissan Motor Co., Ltd. has partnered with LiCAP Technologies, Inc., a U.S.-based innovator, to advance the production process for cathode electrodes in all-solid-state batteries (ASSBs). This collaboration focuses on developing a dry electrode production process, a critical step toward cost-effective and sustainable electric vehicle (EV) battery manufacturing. By leveraging LiCAP’s proprietary technology, Nissan aims to enhance production efficiency and accelerate the commercialization of next-generation EVs equipped with high-performance ASSBs by fiscal year 2028.

Key Highlights

  • Nissan partners with LiCAP Technologies to develop dry electrode production for ASSB cathodes.
  • Dry-process electrodes reduce costs by eliminating drying and solvent recovery steps.
  • LiCAP’s Activated Dry Electrode® technology boosts production efficiency and battery performance.
  • Nissan’s ASSB pilot line operational since January 2025, targeting EV launch by 2028.
  • Environmental benefits include lower manufacturing emissions and sustainable processes.

Advancing Dry Electrode Technology

The partnership centers on creating a dry electrode production process for ASSB cathodes, which offers significant advantages over traditional solvent-based methods. Unlike conventional processes that require energy-intensive drying and solvent recovery, the dry process eliminates these steps, reducing manufacturing costs and environmental impact. This makes it a promising solution for scalable, eco-friendly battery production. However, achieving high production efficiency for mass manufacturing remains a challenge, which the collaboration aims to address.

LiCAP’s Activated Dry Electrode® technology stands out for its ability to enhance both production efficiency and battery performance. This proprietary method supports the creation of high-performance electrodes for various applications, including lithium-ion batteries, solid-state batteries, and ultracapacitors. By integrating this technology, Nissan seeks to overcome production hurdles and deliver ASSBs that offer improved energy density and cost efficiency for future EVs.

Nissan’s Commitment to ASSB Development

Nissan has been actively advancing its ASSB technology, with its pilot production line operational since January 2025. The company is intensifying research and development efforts to meet its goal of launching EVs with in-house developed ASSBs by fiscal year 2028. The partnership with LiCAP marks a pivotal step in this journey, combining Nissan’s expertise in automotive manufacturing with LiCAP’s cutting-edge electrode technology to drive innovation in the EV sector.

About LiCAP Technologies

LiCAP Technologies, Inc., based in the United States, specializes in advanced electrode manufacturing solutions. Its Activated Dry Electrode® process is designed to deliver sustainable, high-performance solutions for a range of energy storage systems, including lithium-ion batteries, solid-state batteries, and sodium-ion batteries. This technology positions LiCAP as a key player in the global push for greener and more efficient battery production.

Implications for the EV Industry

This collaboration underscores the growing importance of ASSBs in the EV industry. By focusing on dry electrode production, Nissan and LiCAP are addressing key challenges in cost, scalability, and sustainability. The successful development of this technology could lead to more affordable and environmentally friendly EVs, strengthening Nissan’s position in the competitive EV market and contributing to global sustainability goals.

Bottom Line

Nissan’s partnership with LiCAP Technologies represents a strategic move to revolutionize ASSB production. By adopting LiCAP’s innovative dry electrode technology, Nissan is poised to enhance the efficiency and sustainability of its battery manufacturing process. As the company progresses toward its 2028 EV launch target, this collaboration could play a crucial role in shaping the future of electric mobility.

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