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Reactive Oxygen Species Controllable Nonthermal Atmospheric Pressure Plasmas Using Coaxial Geometry for Biomedical Applications

机译:使用同轴几何的生物医学应用中的活性氧可控的非热大气压等离子体

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We used a coaxial geometry to create novel nonthermal and high oxygen-rich helium plasmas to enhance the reactive oxygen species concentrations under low-voltage driving conditions. The optical emission spectra of the plasma showed that the oxygen flow affected the plasma properties, without generating oxygen plasmas. Spectra intensities of oxygen peaks of 777 and 845 nm created from helium plasmas under oxygen-rich conditions were approximately two times greater than plasmas not under oxygen rich conditions. Results indicate the efficacy of oxygen-rich helium plasma jets in biomedical applications.
机译:我们使用了同轴几何形状来创建新型的非热高富氧氦等离子体,以增强低压驱动条件下的活性氧浓度。等离子体的光发射光谱表明,氧气流量影响等离子体性能,而不会产生氧气等离子体。在富氧条件下由氦等离子体产生的777和845 nm氧峰的光谱强度大约是在不富氧条件下的等离子体的光谱强度的两倍。结果表明富氧氦等离子体射流在生物医学应用中的功效。

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