Figure_04_b_H2O2_concentration_humidity_1W PIP Tuning plasma chemistry by various excitation mechanisms for the H2O2 production of atmospheric pressure plasma jets txt
Figure_05_a_H2O2_concentration_power PIP Tuning plasma chemistry by various excitation mechanisms for the H2O2 production of atmospheric pressure plasma jets txt
Figure_05_b_H2O2_yield_power PIP Tuning plasma chemistry by various excitation mechanisms for the H2O2 production of atmospheric pressure plasma jets txt
Figure_06_H2O2_concentration_freqeuency PIP Tuning plasma chemistry by various excitation mechanisms for the H2O2 production of atmospheric pressure plasma jets txt
Figure_07_a_consumed_generator_power PIP Tuning plasma chemistry by various excitation mechanisms for the H2O2 production of atmospheric pressure plasma jets txt
Figure_07_b_H2O2_yield_consumed_generator_power PIP Tuning plasma chemistry by various excitation mechanisms for the H2O2 production of atmospheric pressure plasma jets txt
Figure_02_a_waveforms_kHz PIP Tuning plasma chemistry by various excitation mechanisms for the H2O2 production of atmospheric pressure plasma jets txt
Figure_02_c_waveforms_RF PIP Tuning plasma chemistry by various excitation mechanisms for the H2O2 production of atmospheric pressure plasma jets txt
Figure_02_e_waveforms_ns PIP Tuning plasma chemistry by various excitation mechanisms for the H2O2 production of atmospheric pressure plasma jets txt
Figure_03_temperature_kHz PIP Tuning plasma chemistry by various excitation mechanisms for the H2O2 production of atmospheric pressure plasma jets txt