Laboratory of Translational Free Radical Biomedicine, Sechenov University, 119991 Moscow, Russia.
Laboratory of Medical Biophysics, Privolzhsky Research Medical University, 603005 Nizhny Novgorod, Russia.
Sensors (Basel). 2023 Jan 13;23(2):932. doi: 10.3390/s23020932.
The generation of ozone and nitrogen oxides by laser-induced dielectric breakdown (LIDB) in mixtures of air with noble gases Ar, He, Kr, and Xe is investigated using OES and IR spectroscopy, mass spectrometry, and absorption spectrophotometry. It is shown that the formation of NO and NO noticeably depends on the type of inert gas; the more complex electronic configuration and the lower ionization potential of the inert gas led to increased production of NO and NO. The formation of ozone occurs mainly due to the photolytic reaction outside the gas discharge zone. Equilibrium thermodynamic analysis showed that the formation of NO in mixtures of air with inert gases does not depend on the choice of an inert gas, while the equilibrium concentration of the NO+ ion decreases with increasing complexity of the electronic configuration of an inert gas.
利用光谱发射、红外光谱、质谱和吸收分光光度法,研究了空气中的混合气体(包括氩气、氦气、氪气和氙气)通过激光诱导介电击穿(LIDB)产生臭氧和氮氧化物的过程。结果表明,NO 和 NO 的形成明显取决于惰性气体的类型;惰性气体具有更复杂的电子构型和更低的电离势,导致 NO 和 NO 的生成量增加。臭氧的形成主要归因于放电区外的光解反应。平衡热力学分析表明,空气中惰性气体混合物形成 NO 的过程并不取决于惰性气体的选择,而随着惰性气体电子构型复杂性的增加,NO+离子的平衡浓度会降低。