New Technology– category –
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New Technology
Frederick National Lab Establishes High-Throughput Tumor Organoid Platform Using MIMETAS OrganoPlate for Precision Oncology
Frederick National Laboratory for Cancer Research USA Overview The Frederick National Laboratory for Cancer Research has established an advanced tumor organoid platform for precision oncology, leveraging MIMETAS' perfusion-enabled, high-... -
New Technology
AI Bioprocess Control Systems Revolutionize Biomanufacturing with Real-time Optimization for Fermentation, Cell Culture, and Purification
DevOps School USA Overview AI bioprocess control systems integrate real-time sensor data, historical data, and predictive models to monitor, forecast, and optimize fermentation, cell culture, and purification processes. Showcasing practi... -
New Technology
Chinese Research Reveals Influence of Obstacles in Hydrogen Ship Storage Cabins on Deflagration and Venting Processes to Enhance Safety
ResearchGate (International Journal of Hydrogen Energy) China Overview Research has been published on the impact of obstacles within hydrogen storage cabins on deflagration and venting processes during hydrogen leaks in hydrogen fuel cel... -
New Technology
Electrolyzer Technologies: PEM, Alkaline, SOEC, AEM Compared & Key to Reducing Green Hydrogen Production Costs, Danish Innovators Achieve 30% Cost Reduction
Pressure Control Solutions BV Netherlands Overview Electrolyzers are central to green hydrogen production, with electricity accounting for 50-70% of costs, making access to low-cost renewable power crucial for project economics. PEM, alk... -
New Technology
Birmingham University Breakthrough: Perovskite Catalyst Converts Industrial Waste Heat Directly to Low-Cost Hydrogen
ScienceDaily UK Overview Researchers at the University of Birmingham have developed a novel perovskite-based catalyst that enables hydrogen production from water splitting at significantly lower temperatures (150–500 °C) by directly util... -
New Technology
Upcycling Spent LiFePO4 to High-Performance LiMnxFe1−xPO4 Cathodes: Achieving 91.1% Capacity Retention After 500 Cycles, Bridging Resource Circularity and Enhanced Performance
Chemical Science (RSC Publishing) UK Overview A new strategy proposes upcycling spent LiFePO4 (LFP) cathode material into high-performance LiMnxFe1−xPO4 (LMFP) cathodes. The regenerated LMFP cathode demonstrated excellent specific capaci... -
New Technology
Bitumen-Derived Hard Carbon Emerges as Next-Gen Anode Material: Achieving 343 mAh/g in Na-ion Batteries with Cost Superiority over Li-ion
Bitumen Battery Industry Unknown Overview Bitumen-derived hard carbon is gaining significant attention as a next-generation anode material for both lithium-ion (LIB) and sodium-ion batteries (NIB). Research demonstrates this material can... -
New Technology
V/S Co-Doping Synergistically Boosts Conductivity and Stability of LiMn0.6Fe0.4PO4 Cathodes, Maintaining 125 mAh g^-1 After 600 Cycles
ACS Publications USA Overview Research demonstrates that co-doping with vanadium and sulfur synergistically enhances both the conductivity and stability of LiMn0.6Fe0.4PO4 (LMFP) cathodes. The VS-LMFP cathode achieved an impressive initi... -
New Technology
US PNNL Launches New Grid-Scale Battery Production Line: 16 Equipment Stations Accelerate Next-Gen Energy Storage Tech
tomorrowsworldtoday.com USA Overview The U.S. Department of Energy's Pacific Northwest National Laboratory (PNNL) has launched a new production line for manufacturing grid-scale batteries. This 1,400-square-foot facility is equipped with... -
New Technology
Chinese Lab Claims Breakthrough Lithium-Metal Battery: Double Energy Density, 3-Minute Charge, Potentially Ending Lithium-Ion Era
Autonocion.com China Overview A Chinese research lab has announced the development of a groundbreaking lithium-metal battery boasting twice the energy density of existing lithium-ion batteries and capable of charging in just three minute...