HomeElectronicsBattery and Energy StorageFinding the Alternative of Lithium-ion Batteries

    Finding the Alternative of Lithium-ion Batteries

    Lithium-ion batteries are currently the preferred technology to power electric vehicles, but they’re too expensive for long-duration grid-scale energy storage systems, and lithium itself is becoming more challenging to access.

    While lithium does have many advantages—high energy density and capacity to be combined with renewable energy sources to support grid-level energy storage—lithium carbonate prices are at an all-time high. Contributing to the rising cost are pandemic-related supply-chain bottlenecks, the Russia-Ukraine conflict, and increased demand from businesses. Additionally, many governments are hesitant to green light lithium mines because of the high environmental costs and the potential for human rights violations.

    As governments and industries all over the world are eager to find energy storage options to power the clean energy transition, new research conducted at the University of Houston suggests ambient temperature solid-state sodium-sulfur battery technology as a viable alternative to lithium-based battery technology for grid-level energy storage systems.

    Yan Yao, Cullen Professor of Electrical and Computer Engineering, and his colleagues developed a homogeneous glassy electrolyte that enables reversible sodium plating and stripping at a greater current density than previously possible.

    “The quest for new solid electrolytes for all-solid sodium batteries must concurrently be low cost, easily fabricated, and have incredible mechanical and chemical stability,” said Yao, who is also principal investigator of the Texas Center for Superconductivity at the University of Houston (TcSUH). “To date, no single sodium solid electrolyte has been able to achieve all four of these requirements at the same time.”

    The researchers found a novel form of oxysulfide glass electrolyte that has the potential to satisfy all of these requirements at the same time. A high-energy ball milling process was used to create the electrolytes at room temperature.

    “The oxysulfide glass has a distinct microstructure, resulting in a completely homogeneous glass structure,” said Ye Zhang, who works as a research associate in Yao’s group. “At the interface between sodium metal and the electrolyte, the solid electrolyte forms a self-passivating interphase that is essential for reversible plating and stripping of sodium.”

    It has proven difficult to achieve stable plating and stripping of sodium metal using a sulfide electrolyte.

    “Our study overturned this perception by establishing not only the highest critical current density among all Na-ion conducting sulfide-based solid electrolytes but also enabling high-performance ambient-temperature sodium-sulfur batteries,” Yao explained.

    “The new structural and compositional design strategies presented in this work provide a new paradigm in the development of safe, low-cost, energy-dense, and long-lifetime solid-state sodium batteries,” Zhang added.

    ELE Times Research Desk
    ELE Times Research Deskhttps://www.eletimes.ai
    ELE Times provides extensive global coverage of Electronics, Technology and the Market. In addition to providing in-depth articles, ELE Times attracts the industry’s largest, qualified and highly engaged audiences, who appreciate our timely, relevant content and popular formats. ELE Times helps you build experience, drive traffic, communicate your contributions to the right audience, generate leads and market your products favourably.

    Related News

    Must Read

    What Are Memory Chips—and Why They Could Drive TV Prices Higher From 2026

    As the rupee continues to depreciate, crossing the magical...

    Anritsu & HEAD Launch Acoustic Evaluation Solution for Next-Gen Automotive eCall Systems

    ANRITSU CORPORATION and HEAD acoustics have jointly launched of...

    Dell Technologies’ 2026 Predictions: AI Acceleration, Sovereign AI & Governance

    Dell Technologies hosted its Predictions: 2026 & Beyond briefing...

    NAL-CSIR Advances Field testing of Indigenous Defence Tech

    The Council of Scientific and Industrial Research (CSIR)-National Aerospace...

    Toyota & NISE Test Mirai Hydrogen FCEV in India Conditions

    Toyota Kirloskar Motor (TKM) and the National Institute of...

    Nissan Powering EV Component Plant with Repurposed Batteries

    Nissan Australia has launched the Nissan Node project, a...

    KEC, Powernet & Wise Integration Co-Develop AI Server SMPS Power Solutions

    Wise Integration (France), Powernet (Korea) and KEC (Korea) will...

    FAMES Pilot Line R&D Advances: 400°C CMOS Enables 3D Integration Goals

    CEA-Leti, the coordinator of the FAMES Pilot line, has achieved...

    Keysight & KT SAT Nail Industry First GEO-to-LEO Multi-Orbit NTN Handover!

    Keysight Technologies, Inc., in collaboration with KT SAT, has...

    Nuvoton Emphasises Need to Strengthen Taiwan-Israel R&D Collaboration

    Nuvoton Technology showcased its leadership in international expansion by...