Understanding these interactions at the atomic level is crucial for optimizing the design of multi-cation electrode materials. In addition to their applications in batteries, high-entropy sulfides ...
Here, the authors report a self-assembly technique to synthesize atomically thin high-entropy oxides from the ... water electrolyser using a membrane electrode assembly achieving a 40% increase ...
A new efficient alloy-based catalyst developed for improved hydrogen production through electrolysis of water into hydrogen and oxygen, can pave the path towards a solution for clean energy production ...
Citation: Advanced composites: High entropy crystalline and amorphous nanolaminates as promising candidates for nuclear materials (2025, January 16) retrieved 1 February 2025 from https://phys.org ...
Alloys traditionally consist of two or more metallic elements, with secondary elements enhancing the properties of a primary ...
Hosted on MSN23d
Advanced composites: High entropy crystalline and amorphous nanolaminates as promising candidates for nuclear materialsMore information: Daniel Åžopu, Improved irradiation resistance of high entropy nanolaminates through interface engineering, Materials Futures (2025). DOI: 10.1088/2752-5724/ada8c5 Provided by ...
A research group from the Institute for Research on Next-generation Semiconductor and Sensing Science (IRES²) at Toyohashi ...
3d
Tech Xplore on MSN'Living' electrodes breathe new life into traditional silicon electronicsHigh-speed electronic devices that do not use much power are useful for wireless communication. High-speed operation has ...
Researchers at Osaka University in Suita, Japan, have devised a novel way to improve the performance of electronic devices. The study, published in ACS Applied Electronic ...
Achieve superior battery electrode quality with the LInspector Edge, offering real-time mass profiling and advanced defect ...
UDRI Advanced High-Temperature Materials researchers engage in the characterization, life prediction, and testing of ceramic and refractory materials. We can evaluate the strength, fracture, fatigue, ...
University of Toronto researchers have developed a flexible, biodegradable electrode capable of stimulating neural precursor cells (NPCs) in the brain—a device capable of delivering targeted ...
Some results have been hidden because they may be inaccessible to you
Show inaccessible results