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Dongguk University researchers have significantly advanced lithium-ion battery technology by creating a new hybrid anode ...
14d
AZoNano on MSNBoosting Hydrogen Fuel Production with TiO2 and Copper-Based MOFsThe synergy between TiO2 and HKUST-1 leads to high hydrogen evolution rates, offering a sustainable alternative to noble ...
23h
AZoM on MSNImproving Wound Care with Bioactive Material-Based DressingsA new bilayer fiber wound dressing using PLA and PVA with aloe vera and propolis supports healing, moisture retention, and ...
3d
Interesting Engineering on MSNBreakthrough EV battery material design may answer range anxiety, slow cell deathA new EV battery breakthrough in South Korea's Dongguk University "offers a pathway to smaller, lighter, and more efficient ...
7d
Tech Xplore on MSNHybrid anode material advances lithium-ion battery technologyLithium-ion batteries are the dominant energy storage technology powering everything from portable electronics to electric ...
15d
AZoM on MSNTransforming Sodium-Ion Batteries with Cobalt-Tin SulfidesOptimized synthesis of Co-Sn sulfides enhances sodium-ion battery stability and capacity, positioning SIBs as a viable ...
South Korean universities have collaborated to achieve a breakthrough in lithium-ion battery technology by developing a novel ...
Lithium-ion batteries are the dominant energy storage technology powering everything from portable electronics to electric vehicles and renewable energy systems. However, the demand for higher energy ...
8d
AZoBuild on MSNNature-Inspired Lightweight Cement Material Cuts Carbon Emissions and Boosts StrengthResearchers develop a low-carbon, high-strength cement material inspired by nature’s porous structures—offering improved ...
12d
AZoNano on MSNN-Doped Ti3O5: Enhanced Photocatalytic Removal of Phenolic Compounds from WastewaterA new study highlights the efficiency of nitrogen-doped Ti3O5 in removing phenolic compounds from industrial wastewater using ...
In a groundbreaking study published recently in BME Frontiers, researchers have developed a novel caffeine sensor utilizing zinc-doped tin oxide ...
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