Technical institutes

Technical institutes

Breakthrough in Lithium Metal Batteries: A Promising Approach for Low-Temperature and High-Voltage Performance

Researchers at the Changchun University of Technology have made a significant discovery in the development of rechargeable lithium metal batteries (LMBs). The team has designed a locally high-concentration electrolyte based on methyl acetate, which significantly improves the stability and performance of LMBs at low temperatures. The innovative electrolyte, optimized with

Technical institutes

Nanoparticles Coating Fabric for Medical and Protective Applications: Research Breakthrough

Researchers at PSG College of Technology in Tamil Nadu, India, have developed a new method to coat fabrics with natural rubber latex containing various nanofillers, resulting in multifunctional fabrics. The study found that single-cycle coated fabrics exhibited superior mechanical strength, acid durability, and UV-visible light shielding effectiveness, while double-cycle coated

Technical institutes

Calphad-Guided Prediction and Interpretation of Phase Formation in Ta-Mo-Cr-Ti-Al Refractory High-Entropy Alloys

Researchers at the Karlsruhe Institute of Technology (KIT) have conducted a study on designing alloys with a disordered body-centered-cubic (BCC) A2 crystal structure within the refractory high-entropy alloy (RHEA) system Ta-Mo-Cr-Ti-Al. The study utilized equilibrium calculations, microstructure analysis, and differential scanning calorimetry (DSC) to predict alloy compositions with a dominant

Technical institutes

Breakthrough in Nanotechnology: Researchers Develop New Erbium-Based Nanoparticles

Researchers from Shenzhen Technology University have made a groundbreaking discovery in the field of nanotechnology, developing new erbium-based nanoparticles that can revolutionize various applications, including imaging, communications, and biosensing. This study, published in the journal Nanoscale, marks a significant advancement in understanding the rate equations of these nanoparticles at arbitrary