What's Happening?
Despite pioneering significant advancements in battery chemistry and manufacturing processes, the United States struggles to commercialize these innovations into large-scale domestic production. This challenge is identified as a 'missing middle' in the U.S.
commercialization ecosystem, representing the gap between early-stage research and development (R&D), predominantly funded publicly, and later stages of innovation where private capital typically intervenes. Battery technologies encounter multiple barriers as they transition from laboratory prototypes to pilot production, customer testing, and eventual commercial manufacturing. This fragmentation is exacerbated by a lack of shared facilities, expertise, and clear pathways for moving technologies between stages, which slows commercialization and increases risk. To address this, shared commercialization infrastructure is emerging, with facilities like the Carolina Institute for Battery Innovation, Georgia Tech’s Advanced Battery Center, and the Alabama Mobility and Power Center providing specialized manufacturing capabilities and expertise.
Why It's Important?
Closing the 'missing middle' is crucial for the United States to fully capitalize on the economic benefits of the clean energy transition and strengthen its power system. Domestic battery manufacturing is essential for enhancing U.S. economic competitiveness, especially as battery deployment grows across the power sector for grid stability and in transportation for electric vehicles. The current gap means that many U.S.-developed battery technologies are not reaching commercial scale domestically, leading to missed opportunities for job creation, industrial growth, and energy independence. By fostering shared commercialization infrastructure, the U.S. can reduce commercialization risks, provide access to critical equipment and expertise, and accelerate the transition of innovative battery technologies from lab to market. This will also help build manufacturing expertise and strengthen coordination across the entire battery ecosystem, from universities to original equipment manufacturers.
What's Next?
The development of shared commercialization infrastructure, such as the facilities in the Southeast U.S., is a key step towards bridging the innovation gap. These centers will continue to expand their capabilities, offering pilot-scale manufacturing, process optimization, and validation services for new battery materials and designs. Future efforts will focus on strengthening ecosystem coordination by connecting universities, startups, national laboratories, equipment manufacturers, suppliers, and battery producers. Policy initiatives may also emerge to further support the creation and expansion of such shared infrastructure, potentially through public-private partnerships and targeted funding. The goal is to create a more seamless transition for battery technologies through various stages of development, making them more attractive to private investors and commercial partners and ultimately boosting domestic manufacturing capacity.
Beyond the Headlines
The 'missing middle' problem in battery commercialization reflects a broader systemic challenge in translating scientific breakthroughs into industrial leadership across various advanced technology sectors in the U.S. It highlights the need for a more integrated national innovation strategy that extends beyond basic research to encompass robust manufacturing readiness and scale-up support. Addressing this gap involves not just financial investment but also fostering a culture of collaboration between academia, government, and industry, alongside developing a skilled workforce capable of operating advanced manufacturing processes. The success in overcoming this challenge in the battery sector could serve as a model for other emerging technologies, reinforcing the U.S.'s position as a leader in innovation and manufacturing, and ensuring that the economic and strategic benefits of technological advancements are realized domestically.











