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Researchers show clean solid–electrolyte/electrode interfaces double capacity of solid-state Li batteries


Researchers show clean solid–electrolyte/electrode interfaces double capacity of solid-state Li batteries
Scientists at Tokyo Institute of Technology (Tokyo Tech), Tohoku University, National Institute of Advanced Industrial Science and Technology, and Nippon Institute of Technology, have demonstrated by experiment that a clean electrolyte/electrode interface is key to realizing high-capacity solid-state lithium batteries (SSLBs). Their findings could pave the way for improved battery designs with increased capacity, stability, and safety for both mobile devices and electric vehicles. A paper on their work appears in the journal
ACS Applied Materials & Interfaces.
Solid-state lithium batteries comprise solid electrodes and a solid electrolyte that exchange lithium (Li) ions during charging and discharging. Their higher energy density and safety make SSLBs very attractive as next-generation sstorage solutions. ....

Japan General , Hideyuki Kawasoko , Nippon Institute Of Technology , National Institute Of Advanced Industrial Science , Tohoku University , Tokyo Institute , Tokyo Tech , National Institute , Advanced Industrial Science , Nippon Institute , Assistant Professor Hideyuki Kawasoko , ஜப்பான் ஜநரல் , நிப்பான் நிறுவனம் ஆஃப் தொழில்நுட்பம் , தோஹோக்கு பல்கலைக்கழகம் , டோக்கியோ நிறுவனம் , டோக்கியோ தொழில்நுட்பம் , தேசிய நிறுவனம் , நிப்பான் நிறுவனம் ,

Keeping a clean path: Doubling the capacity of solid-state lithium batteries


Credit: Taro Hitosugi
Scientists at Tokyo Institute of Technology (Tokyo Tech), Tohoku University, National Institute of Advanced Industrial Science and Technology, and Nippon Institute of Technology, demonstrated by experiment that a clean electrolyte/electrode interface is key to realizing high-capacity solid-state lithium batteries. Their findings could pave the way for improved battery designs with increased capacity, stability, and safety for both mobile devices and electric vehicles.
Liquid lithium-ion batteries are everywhere, being found in the majority of everyday mobile devices. While they possess a fair share of advantages, liquid-based batteries carry notable risks as well. This has become clear to the public in recent years after reports of smartphones bursting into flames due to design errors that caused the battery s liquid electrolyte to leak and catch fire. ....

Japan General , Hideyuki Kawasoko , Global Zero Emission Research Center , National Institute Of Advanced Industrial Science Technology , Nippon Institute Of Technology , National University , National Institute Of Advanced Industrial Science , Tokyo Institute Of Technology , Tohoku University , Tokyo Institute , Tokyo Tech , National Institute , Advanced Industrial Science , Nippon Institute , Taro Hitosugi , Professor Hideyuki Kawasoko , Designated National University , East Japan Earthquake , Chemistry Physics Materials Sciences , Atomic Molecular Particle Physics , Energy Fuel Non Petroleum , ஜப்பான் ஜநரல் , உலகளாவிய பூஜ்யம் உமிழ்வு ஆராய்ச்சி மையம் , நிப்பான் நிறுவனம் ஆஃப் தொழில்நுட்பம் , தேசிய பல்கலைக்கழகம் , டோக்கியோ நிறுவனம் ஆஃப் தொழில்நுட்பம் ,