Segmented electrode plates create uniform fluid channels that resolve the trade-off between cell volume and electrolysis efficiency.
A photoelectric wheel patterns electrodes via light to enable precise electrochemical deposition without customized masks.
Printed circuit board plates replace metal components in anion exchange membrane electrolyser structures.
An electrolytic cell maintains fluorine concentration in anode gas to convert hydrogen into hydrofluoric acid.
High-pressure oxygen storage eliminates compression energy losses, boosting solid oxide electrolysis efficiency for renewable integration.
Replacing oxygen evolution with organic oxidation reduces overpotential and energy consumption while the diaphragm isolates chambers to prevent side reactions.
Moving electrodes along rails maintains constant distance during plating, resolving uneven field intensity and surface roughness caused by fixed contacts.
Segmented anode and cathode chambers prevent hydrogen migration to the anode, ensuring safe nitrogen trifluoride production.
An electrochemical cell reduces carbon dioxide into solid carbon products using a molten CaCO3:CaCl2:CaO electrolyte mixture.
Plasma-treated separators prevent gas crossover and hot spots by eliminating interface voids through a three-dimensional porous network.
A recapture loop condenses water vapor from the nitrogen-enriched air stream to replenish the PEM inerting system and prevent performance degradation.
A gas generator cooling system uses a dual-tank configuration with coolant immersion to prevent hydrogen explosions during electrolysis.
A workpiece holding jig uses a sealed frame with inner and outer seal members to protect the connection area during electroplating.
Controlled Ta target crystal orientation stabilizes deposition speed throughout the sputtering process.
Modular electrochemical reaction device minimizes conversion efficiency losses from two-stage excitation through integrated electrode structures.
A mold secures ripstop nylon fabric within a high-density polyethylene frame to form an electrolyzer membrane module.
Incorporated electrodes eliminate external contamination risks during DNA extraction.
A fuel cell discharge-gas processing device routes cathode gas through a bypass path to prevent backflow and clogging in low-temperature environments.
A plating bath containing AlBr3, LiBr, and KBr deposits aluminum coatings on metallic components.
Deuterium recovery equipment generates heavy water from exhaust gases to enable efficient reuse of deuterium compounds, addressing high costs and low abundance.