📢 Third Edison Awards Win! ProLogium’s “Superfluidized All-Inorganic Solid-State Lithium Ceramic Battery” Marks Another Major Milestone
After winning Gold in 2019 with the Logithium solid-state battery pack and Bronze in 2021 with the ASM (Active Safety Mechanism), we have continued to pursue comprehensive upgrades across materials and battery architecture. Building on ASM technology, we synthesized and developed an all-inorganic solid-state electrolyte, and in 2025 achieved a breakthrough superfluidization technology, introducing the Superfluidized All-Inorganic Solid-State Lithium Ceramic Battery with dual comprehensive "Safety × Performance." This innovation has once again earned us the Edison Gold Award, regarded as the Oscars of Innovation. This recognition represents not just a single achievement, but a clear trajectory from technological innovation to industrial-scale commercialization.
ProLogium's Superfluidized All-Inorganic Solid-State Lithium Ceramic Battery breaks away from conventional solid-state battery design thinking, fundamentally reconstructing the battery system into a comprehensive performance solution: triple safety mechanism, ultra-fast charging, lightweight design, long range, stable low-temperature performance, repairable design, and high residual value, perfectly meeting the award criteria of breakthrough innovation, tangible commercial value, and industry impact. Today, we are also sharing the proprietary technological breakthroughs behind these exceptional results:
💡 High Ionic Conductivity Without External Pressure
ProLogium's superfluidized all-inorganic solid-state electrolyte achieves a near-unity transference number (~100%), comparable to solid sulfide electrolytes, without requiring high external pressure, along with ionic conductivity 5× higher than conventional liquid and sulfide solid-state electrolytes. It also maintains over 90% efficiency at low temperatures under -20°C. This advantage is reflected not only in energy density and fast charge/discharge performance, but also in greater design flexibility and cost efficiency.
💡 High Energy Density, Fast Charging, and Low-Temperature Performance
860 Wh/L high energy density meets long-range demands; 4–6 minute charging to 60–80% improves charging convenience and station turnover rates; stable low-temperature performance expands application scenarios and environments, three critical capabilities packed into a single cell.
💡 Dual-Function Electrolyte: Safety and Performance in One
Beyond its high conductivity, the superfluidized all-inorganic solid-state electrolyte is intrinsically non-flammable and can release ASM in situ under high temperature and voltage conditions, passivating cathode and anode active materials and eliminating thermal chain reactions to prevent thermal runaway.
ProLogium Founder and CEO Vincent Yang stated: "For ProLogium, the value of technological innovation lies not only in pushing performance benchmarks, but in establishing a reliable, scalable, and sustainable path to industrialization. This third Edison Award is a significant encouragement for our long-term commitment to next-generation battery technology. We will continue to support the global transition of transportation, industrial, and energy systems with a safer, more efficient, and more manufacturable technology platform."
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