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LIB-SSB 2027 : 2027 International Conference on Lithium-Ion Battery and Solid-State Battery | |||||||||||
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Call For Papers | |||||||||||
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2027 International Conference on Lithium-Ion Battery and Solid-State Battery (LIB-SSB 2027)
★CONTACT US Website: www.lib-ssb.org Date: October 29–31, 2027 Venue: China Full Paper Submission: May 8, 2027 Email: email@lib-ssb.org Tel:+86-28-85586839 (International) Monday-Friday, 9:00am-12:00pm and 1:30pm-6:00pm ★Welcome to LIB-SSB 2027 Taking place on October 29–31, 2027, the 2027 International Conference on Lithium-Ion Battery and Solid-State Battery (LIB-SSB 2027) is a premier forum focused on advancing next-generation energy storage technologies. The conference will bring together materials scientists, electrochemists, battery engineers, industry leaders, and policymakers to exchange breakthrough ideas and practical solutions shaping the future of high-performance, safe, and sustainable battery systems. ★Publication Information Registered and presented full papers will be included in the LIB-SSB 2027 digital conference proceedings and submitted to major citation databases (including, but not limited to Ei Compendex and Scopus) for review and indexing. ★Call for papers Topics of Interest include but not limited to: 1. Cathode, Anode, and Electrolyte Materials High-nickel, Li-rich, and conversion-type cathode materials Silicon, lithium-metal, and alloy-type anodes 2. Performance Characterization and Multiscale Modeling Thermal runaway prediction and safety modeling Lifetime prediction, aging models, and second-life applications 3. Solid-State Battery Design and Manufacturing Thin-film, bulk-type, and 3D-structured solid-state battery architectures Scalable manufacturing: tape casting, dry processing, and roll-to-roll techniques 4. Safety, Thermal Management, and Reliability Thermal runaway mechanisms, mitigation strategies, and early warning systems Advanced thermal management: phase-change materials, liquid cooling, and immersion cooling 5. Li-Ion Battery Advances and System Integration High-energy-density and fast-charging Li-ion chemistries Advanced electrode architectures and binders for next-gen Li-ion cells 6. Recycling, Sustainability, and Policy Direct, hydrometallurgical, and pyrometallurgical recycling processes Design for recyclability and closed-loop material recovery |
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