EnergyResearchScience

Breakthrough Membrane Technology Extends Lifespan of Zinc-Iodine Flow Batteries

Scientists have created a specialized membrane that revolutionizes zinc-iodine flow battery performance. The technology selectively filters hydrated ions while preventing water migration, significantly extending battery lifespan under demanding conditions.

Revolutionary Membrane Design

Researchers have developed a breakthrough membrane technology that reportedly enables significantly longer-lasting aqueous zinc-iodine flow batteries, according to recent findings published in Nature Communications. Sources indicate the innovation centers on a specially designed Zn-MOF-CJ3-based ionic molecular sieve (ZMC-IMS) membrane featuring hydrated ions-confined subnanometer channels that selectively control ion transport.

MaterialsResearchScience

Laser Synthesis Yields Stable Iron Oxide Nanoparticles with Phase Control Potential

Scientists have successfully synthesized iron oxide nanoparticles using pulsed laser ablation in liquids, with ethanol demonstrating superior yield and stability. The research reveals controlled phase composition with potential applications across multiple industries.

Breakthrough in Nanoparticle Synthesis

Researchers have developed an innovative approach to synthesizing iron oxide nanoparticles using pulsed laser ablation in liquids (PLAL), with sources indicating the method produces stable nanoparticles with controlled properties. According to reports published in Scientific Reports, the technique allows for precise manipulation of nanoparticle characteristics by varying solvents and laser energy, potentially opening new avenues for medical and industrial applications.