Breaking 17:20 Gold and silver tumble as dollar surges on Iran war and inflation fears 16:50 Fuel price surge disrupts Easter and spring travel worldwide 16:40 UBS holds $5,600 gold target and calls 17% pullback a buying opportunity 16:20 Rescue operation underway as debris in Iran identified as U.S. F-15E 15:50 AI-powered cyberattacks reach a "pivotal moment," experts warn 15:20 Wedbush holds $600 Tesla target despite disappointing Q1 deliveries 14:50 China's Tianlong-3 rocket fails on maiden flight 13:50 Analysts warn Iran could become a North Korea-style garrison state 13:20 Tether gives investors two weeks to commit to $500 billion valuation round 13:10 Coinbase commits $150 million to protect Bitcoin from quantum computing threats 12:50 Erste Group cuts Toyota to "hold" on tariff drag and slowing US sales 12:40 Arm shares slide as investors lock in gains after AI-driven rally 11:50 Iranian drones strike Kuwait's Mina al-Ahmadi refinery again, sparking fires 11:50 Morocco launches sovereign AI platform to boost industrial transformation 11:35 Tesla posts record sales in South Korea and Australia as oil crisis accelerates EV shift 11:20 European Q1 earnings set to rise 4% as energy sector surges 10:50 Japan warns speculators as yen nears 160 amid escalating Iran conflict 10:20 Anthropic maps 171 emotion-like patterns inside Claude that shape its behavior 09:50 Container ship Safeen Prestige sinks in Strait of Hormuz after weeks ablaze 09:20 Airlines face bankruptcy risk as fuel costs soar amid Middle East conflict 08:50 Fossils in China push back origins of complex animal life by millions of years 08:20 Artemis II crew captures iPhone footage in zero gravity on lunar journey 07:50 JWST finds "forbidden" exoplanet with unexpectedly metal-poor atmosphere

Silver coating makes solid-state batteries five times crack-resistant

Friday 16 January 2026 - 13:50
By: Dakir Madiha
Silver coating makes solid-state batteries five times crack-resistant

Researchers at Stanford University have developed an ultra-thin silver coating for solid electrolytes that boosts crack resistance nearly fivefold, tackling a key barrier to commercializing next-generation lithium-metal batteries. Published January 16 in Nature Materials, the breakthrough promises safer batteries with higher energy density and faster charging compared to current lithium-ion technology.

Solid-state batteries aim to replace flammable liquid electrolytes with durable ceramic materials like LLZO, composed of lithium, lanthanum, zirconium, and oxygen. These ceramics, while theoretically superior, suffer from micro-cracks during charge cycles that lead to failure. The Stanford team applied a 3-nanometer silver layer, then heated samples to 300 degrees Celsius, allowing silver atoms to diffuse 20 to 50 nanometers deep and replace smaller lithium atoms.

Dissolved silver ions, not metallic silver, proved key to hardening the ceramic and blocking crack initiation and propagation. Lead researcher Xin Xu, now an assistant professor at Arizona State University, noted this nanoscale doping transforms how fissures form on electrolyte surfaces, enabling robust solid electrolytes for advanced energy storage.

This protective approach suits real-world manufacturing, where stacking cathodes, electrolytes, and anodes inevitably creates surface imperfections that prove costly to eliminate entirely. Associate Professor Wendy Gu, the study's senior author, emphasized that a simple silver treatment realistically shields against lithium infiltration during rapid charging, preventing crack expansion.

Tests focused on localized sample areas rather than full cells, leaving scalability and long-term performance over thousands of cycles for future validation. Silver is not unique; larger metal ions like copper show promise, though less effectively, opening paths to sulfur-based electrolytes or sodium batteries that ease lithium supply strains.


  • Fajr
  • Sunrise
  • Dhuhr
  • Asr
  • Maghrib
  • Isha

Read more

This website, walaw.press, uses cookies to provide you with a good browsing experience and to continuously improve our services. By continuing to browse this site, you agree to the use of these cookies.