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Ionic Liquid-Based Gas Generators Using High Voltage Nanosecond Pulse Discharge
Curtis Hauck1, Caleb Medchill1, Boxin Zhang2
1Ming Hsieh Department of Electrical Engineering, University of Southern California, Los Angeles, California 90089, United States.
None:
We demonstrate a novel method for generating gas from low-vapor-pressure ionic liquids using high-voltage (up to 50 kV), nanosecond-scale (10-20 ns) electrical pulses in a coaxial electrode configuration. These rapid discharges initiate gas evolution through electrostriction-driven bubble formation, enabling efficient decomposition of ionic liquids without the need for sustained heating or catalytic assistance. Compared to DC and thermally driven techniques, the nanosecond pulse method produces significantly greater gas volumes in shorter times, with enhanced performance observed when energetic additives are included. The resulting gaseous products were analyzed using quadrupole mass spectrometry, confirming successful volatilization of ionic liquid components. These species possess relatively large atomic massescomparable to xenonbut are stored in a densified liquid form rather than as compressed gases in cylinders, offering a promising pathway for compact, on-demand gas generation in propulsion and energy systems.
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