Silicon is an attractive negative electrode (anode) material for future lithium-ion batteries because it can store much more ...
Vancouver, Nov. 22, 2023 (GLOBE NEWSWIRE) -- The global conductive electrode coatings market size was USD 21.65 Billion in 2022 and is expected to register a revenue CAGR of 7.5% during the forecast ...
The Battery Experts video series with Anthony Chalou from Anton Paar explores the crucial techniques for assessing electrode coatings' adhesion and mechanical properties in lithium-ion batteries. This ...
In their continuing efforts to increase the energy density of lithium-ion batteries, scientists have began looking at alternative materials for those batteries' electrodes – materials such as silicon.
Researchers from the King Abdullah University of Science and Technology (KAUST), in Saudi Arabia, have fabricated an organic solar cell with an ultra-thin electrode coating that is claimed to raise ...
A new study will help researchers create longer-lasting, higher-capacity lithium rechargeable batteries, which are commonly used in consumer electronics. Researchers have shown how a coating that ...
A new solvent-free manufacturing process could make batteries more sustainable and cut manufacturing costs by 15% and energy use by 47% (Joule 2023, DOI: 10.1016/j.joule.2023.04.006). It could also be ...
Halifax, Nova Scotia--(Newsfile Corp. - June 14, 2018) - ELCORA ADVANCED MATERIALS CORP. (TSXV: ERA) (FSE: ELM) (OTCQB: ECORF) (the "Company" or "Elcora") is pleased to announce that it has developed ...
IN two previous communications 1–2 we have reported the results of conduction current measurements and space charge measurements in transformer oil using bare electrodes and electrodes coated with ...
The rapid shift to electric vehicles has created an unprecedented demand for batteries that prioritize safety, reliability, faster charging, extended lifespan, increased power, and cost efficiency.
Implanting electrical devices in the nervous system to treat neural diseases is becoming very common. The success of these brain–machine interfaces depends on the electrodes that come into contact ...