Chloride-free magnesium aluminate salts widen electrolyte stability windows while reducing corrosion and electrode decomposition in Mg batteries.
Co-reduce TiO2 and alloying powders to make homogeneous titanium alloy particulates at lower cost.
Replacing air with an inert carrier fluid prevents oxygen combustion that reduces syngas heating value and causes feedstock sintering.
A high-boiling alkylaluminum solvent enables neopentasilane production while keeping aluminum impurities in the residue for easy distillation separation.
Recycled fines act as fluxing agents to lower slag viscosity, preventing accumulation and plugging in high-ash IGCC operations.
Multi-dentate metal-alkoxide coatings stabilize air-sensitive nanoparticles, preserving active metal content for energetic formulations.
Reversing air flow in a mantel space preheats fuel for rapid start-up, eliminating heavy heating catalysts and complex gas supply systems.
Coupling a hydride with a hydrate balances exothermic hydrolysis heat against endothermic phase transitions to prevent runaway temperatures.
Stabilized complex hydrides combine aluminum borohydride with metal additives to resolve the trade-off between high hydrogen capacity and chemical instability.
Combined hydrogen-magnesium reduction eliminates multi-stage processing and hydro-metallurgical treatment to produce high-purity titanium hydride powder.
Integrated acid hydrolysis and catalytic reforming produce hydrogen from lignocellulosic biomass at lower temperatures than traditional pyrolysis.
High-pressure water flow through a metal orifice creates a charged microjet that produces hydrogen and current, bypassing costly thermal reformation processes.
Ti(OCH3)4 doping in alkali metal aluminum hydride improves hydrogen absorption kinetics and storage density, addressing slow reversible reaction speeds.
Ball-milled zero-valent metal hydride complexes synthesize alloy nanoparticles with controlled stoichiometry.
Ball-milled hydride complexes overcome stoichiometric control limits in resistant cation synthesis.