Academician’s visit empowers development.
2026/06/01
Recently, the Chinese Academy of Engineering Yang Yusheng An academician paid a visit with his wife. Shanneng Technology The academician and his delegation conducted an in-depth inspection of the R&D center and the production workshop. Lithium titanate, titanium niobate, and their associated solid-state electrolytes The research and development and industrialization status were reviewed, and a symposium was held on upgrading high‑safety energy‑storage battery technologies, providing expert guidance to support the company’s growth.
Deeply rooted in the battery industry, a septuagenarian academician remains deeply committed to the development of energy storage.
As a founding figure in China’s chemical power‑source field, Academician Yang Yusheng has devoted decades to advancing new‑energy batteries, military power supplies, and large‑scale energy storage. Upholding the principles of safety first, long‑life energy storage, and green, low‑carbon development, he has been a key driver of high‑safety energy‑storage battery and long‑life battery technologies in China. Even in his advanced years, Academician Yang continues to closely monitor developments in next‑generation anode materials, particularly optimistic about the application prospects of titanium‑based materials in energy storage, grid frequency regulation, and specialized power‑supply systems.
Going deep into the production frontline and endorsing the titanium-based materials technology roadmap.
Accompanied by the company’s core team, Academician Yang Yusheng and his wife toured the production line and gained an in-depth understanding. Lithium titanate (LTO), titanium niobate (TNO) anode materials, and lithium aluminum titanium phosphate (LATP) Solid-state electrolyte the manufacturing process, product performance, and market application scenarios.
Shanneng Technology focuses on the titanium‑based energy storage materials sector, having established a core product portfolio that integrates lithium titanate, titanium niobate, and solid electrolytes. Among these, its modified single‑crystal lithium titanate boasts zero strain, high safety, and exceptionally long cycle life, making it ideally suited for grid frequency regulation and large‑scale energy storage power stations. Its upgraded titanium niobate material addresses key limitations of conventional anode materials—such as poor fast‑charging performance and a narrow operating temperature range—enabling ultra‑fast charging and reliable start‑stop operation at extremely low temperatures, thus serving as a cornerstone material for next‑generation high‑power energy storage batteries.
During the inspection, Academician Yang highly commended Shaneng Technology’s commitment to in-depth research on titanium-based materials and its steadfast adherence to an innovation-driven development philosophy.
Jointly exploring pathways to break the impasse and jointly charting a new blueprint for industrial development.
At the symposium, both sides engaged in a thorough discussion on the industry’s key pain points, exchanging insights on critical issues such as cost reduction and efficiency gains, performance optimization for lithium titanate, large-scale production of titanium niobate, process refinement, and the commercial deployment of related applications. They acknowledged Shaneng Technology’s material performance and cost advantages and proactively offered to help promote the company.
A representative from Shaneng Technology stated that the visit by the academician serves as a strong source of encouragement and recognition for the company. Moving forward, the company will incorporate the academician’s guidance and recommendations, continue to ramp up R&D investment, deepen its expertise in titanium-based anode materials and solid-state electrolytes, accelerate the widespread adoption of lithium titanate, and advance the commercialization of titanium niobate, thereby injecting fresh momentum into the high‑quality development of the new‑energy storage industry.
Conclusion
Academician-led innovation paves the way for a new era, while meticulous craftsmanship drives research and development toward the future. Academician Yang Yusheng’s visit not only underscores recognition of Shaneng Technology’s comprehensive strength but also bolsters confidence in the advancement of the titanium-based energy‑storage materials sector. Moving forward, Shaneng Technology will remain committed to its original mission of innovation, deepening its expertise in high‑safety, long‑life, high‑power energy‑storage materials, thereby supporting the transformation and upgrading of China’s domestic energy‑storage industry and contributing to the realization of the nation’s “dual carbon” strategic goals.
