#TheBatteryShow
NEWARE is attending INESS-2026 in Astana, Kazakhstan, August 5–7. Joining keynotes like Prof. Jeff Dahn, we look forward to connecting with global battery researchers. Meet us in Astana!

NEWARE is participating in the 14th International Conference on Nanomaterials and Advanced Energy Storage Systems (INESS-2026).
The 14th INESS conference will take place from August 5 to 7, 2026, at Nazarbayev University (Block C3) in Astana, Kazakhstan. This event gathers global researchers and experts around the latest developments in nanomaterials and energy storage systems.
High-Performance Materials & Technologies for Next-Generation Energy Systems
Modern Trends in Energy Storage & Battery Engineering
Advanced Electrochemical Systems & Functional Energy Implementations
Sustainable Technologies for Efficient Energy Conversion
AI & Computational Materials Engineering for Energy Systems
Smart Sensing Technologies & Integrated Sensor Platforms
Novel Catalytic Systems & Extreme Environment Materials
Special Strategic Session: From Raw Materials to High-Value Technologies
Prof. Jeff Dahn (Dalhousie University / NSERC / Tesla Canada)
Prof. Rachid Yazami (Nanyang Technological University)
Prof. Seung-Taek Myung (Sejong University / Editor, Journal of Power Sources)
Prof. Shinichi Komaba (Tokyo University of Science)(And many other distinguished global experts)
We look forward to connecting with researchers and scholars to explore how precision testing tools can better empower materials innovation. If you are attending INESS-2026 in Astana, welcome to connect and exchange ideas with us!
Event: 14th International Conference on Nanomaterials and Advanced Energy Storage Systems (INESS-2026)
Date: August 5–7, 2026
Location: Nazarbayev University (Block C3), Astana, Kazakhstan

47690 Westinghouse Dr, Fremont, CA 94539
The lab focuses on solid-state battery research to overcome traditional lithium batteries' safety and energy density issues, supporting environmental sustainability. It develops innovative solid-state electrolytes, refines electrode materials, and investigates ion transfer and interface stability to revolutionize battery technology.
The electric vehicle battery industry is rapidly developing, focusing on technological innovation, market competition, and sustainability. Research hotspots include solid-state batteries, new types of electrolytes, BMS optimization, and recycling technologies. The environmental adaptability, safety, and economic viability of batteries are key research areas, and the industry is expected to undergo more innovation and transformation.
We specialize in battery preparation technology research, focusing on overcoming existing energy storage challenges by innovating in electrode materials, battery chemistry, and manufacturing processes to improve performance, enhance safety, and reduce costs. Sustainability and recycling technologies for batteries are also emphasized to mitigate environmental impacts and foster the growth of green energy.
Electric Hoverboard, electric scooters, e bikes, and electric motorcycles are changing the way people travel, with the development of battery technology being at the core of this transformation. The main issues faced by electric bicycle batteries include battery cost, range, the popularity of charging infrastructure, thermal management of batteries, and safety. As battery technology continues to advance, it provides more reliable power support for these intelligent devices.