Silicon deposited in a porous matrix buffers volume expansion and limits SEI growth, improving Li-ion anode cycle stability.
Mechanochemical milling enables fast synthesis of inorganic solid electrolytes with high ionic conductivity and stable battery performance across temperatures.
Using non-aqueous hydrogen fluoride and organic liquids, this case avoids water-driven quenching and improves inorganic fluoride luminescent emission.
Neutralizing acidic fluorine compounds to pH 4 or higher cuts corrosive emissions while producing larger-particle fluorided solid oxides.
Increasing the silicon to nitrogen atom ratio above 1.30 lowers residual stress and prevents substrate cracks in siliceous insulation films.
Segmenting the reaction column into temperature zones allows vinylpyridine and styrene catalysts to operate simultaneously, resolving thermal stability limits.