-
- News
- Books
Featured Books
- I-Connect007 Magazine
Latest Issues
Current Issue
Beyond the Rulebook
What happens when the rule book is no longer useful, or worse, was never written in the first place? In today’s fast-moving electronics landscape, we’re increasingly asked to design and build what has no precedent, no proven path, and no tidy checklist to follow. This is where “Design for Invention” begins.
March Madness
From the growing role of AI in design tools to the challenge of managing cumulative tolerances, these articles in this issue examine the technical details, design choices, and manufacturing considerations that determine whether a board works as intended.
Looking Forward to APEX EXPO 2026
I-Connect007 Magazine previews APEX EXPO 2026, covering everything from the show floor to the technical conference. For PCB designers, we move past the dreaded auto-router and spotlight AI design tools that actually matter.
- Articles
- Columns
- Links
- Media kit
||| MENU - I-Connect007 Magazine
Yonsei University Develops a New Era of High-Voltage Solid-State Batteries
October 31, 2025 | PRNewswireEstimated reading time: 2 minutes
Researchers at Yonsei University developed a fluoride-based solid electrolyte (LiCl–4Li₂TiF₆) that enables all-solid-state batteries to operate safely beyond 5 volts, overcoming a major voltage stability barrier. The innovation enhances ionic conductivity, prevents interfacial degradation, and achieves record energy density. Its compatibility with cost-effective materials makes it promising for next-generation electric vehicles and renewable energy storage, marking a paradigm shift in battery technology.
In a major advancement for energy storage technology, Professor Yoon Seok Jung and his team at Yonsei University have revealed a new fluoride-based solid electrolyte that enables all-solid-state batteries (ASSBs) to operate beyond 5 volts safely. This paper, made available online on October 3, 2025 and was published in the Nature Energy journal, addressed a long-standing barrier in battery science, achieving high voltage stability without sacrificing ionic conductivity. As Prof. Jung explains, "Our fluoride solid electrolyte, LiCl–4Li2TiF6, opens a previously forbidden route for high-voltage operation in solid-state batteries, marking a true paradigm shift in energy storage design."
For decades, battery engineers have sought to enhance energy density by increasing voltage, but conventional solid electrolytes, such as sulfides and oxides, tend to break down above 4 V. The team overcame this limitation by developing a fluoride solid electrolyte (LiCl–4Li2TiF6) that remains stable beyond 5 V and exhibits a Li+ conductivity of 1.7 × 10⁻⁵ S/cm at 30°C, one of the highest in its class. This innovation allows spinel cathodes such as LiNi0.5Mn1.5O4 (LNMO) to operate safely and efficiently, even under demanding cycling conditions. When applied as a protective coating on high-voltage cathodes, LiCl–4Li2TiF6 effectively suppresses interfacial degradation between the cathode and the electrolyte. The result showed a battery that retains over 75% capacity after 500 cycles and supports an ultrahigh areal capacity of 35.3 mAh/cm², a record-setting figure for solid-state systems. The team also demonstrated practical adaptability in pouch-type batteries. This is the same format used in electric vehicles and consumer electronics, showing exceptional performance consistency.
Beyond material innovation, the work lays the foundation for a transformative battery design model. The fluoride-based shield introduced by the researchers not only enhances electrochemical stability but also allows compatibility with cost-effective halide catholytes such as Zr-based systems. This combination could drastically reduce material costs while improving safety and longevity, which are two of the biggest challenges for commercial ASSB technology.
In conclusion, this research holds immense potential—from enabling electric vehicles with longer driving ranges to advancing large-scale renewable energy storage. By utilizing abundant and low-cost materials, it supports the global shift toward sustainable, carbon-neutral energy systems. As Prof. Jung notes, "This research goes beyond a single material; it defines a new design rule for building safe, durable, and high-energy batteries that can truly power the future."
This breakthrough represents a significant leap toward cleaner and more resilient energy solutions, bridging the gap between laboratory innovation and real-world applications, and laying the groundwork for the next generation of sustainable technology.
Testimonial
"We’re proud to call I-Connect007 a trusted partner. Their innovative approach and industry insight made our podcast collaboration a success by connecting us with the right audience and delivering real results."
Julia McCaffrey - NCAB GroupSuggested Items
Zhen Ding Recognized with Dual 'A' Ratings by CDP
04/16/2026 | Zhen Ding TechnologyZhen Ding Technology Holding Limited, a global leader in the PCB industry, received the highest “A” rating in both Climate Change and Water Security in the 2025 CDP assessment.
Rising Costs to Drive Further Increases in EV Cell Prices in 2Q26
04/16/2026 | TrendForceTrendForce’s latest research on the lithium battery industry reveals that surging raw material prices in 1Q26 supported an upward trend in EV battery pricing through March, with average cell prices rising by 1–3% MoM.
Fuse Expands U.S. Radiation Testing Capacity with New Albuquerque Facility
04/13/2026 | PRNewswireFuse, a leading U.S.-based fusion company, announced the establishment of a new state-of-the-art facility in Albuquerque, New Mexico that will expand U.S. radiation effects testing capacity for critical defense, space, and semiconductor technologies.
Coherent Advances 10kV SiC Epitaxy for AI Datacenters
04/13/2026 | CoherentCoherent Corp., a global leader in photonics, announced advancements in its silicon carbide (SiC) epitaxy capabilities, enabling power devices up to 10kV for next-generation AI datacenter and industrial power applications.
onsemi Powers Sineng Electric’s Advanced Solar and Energy Storage Solutions
04/08/2026 | onsemionsemi announced that its hybrid power integrated modules (PIMs) will be featured in Sineng Electric’s next-generation 430 kW liquid-cooled string energy storage systems (ESS) and 320 kW utility-scale solar inverter.