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Effects of assisted magnetic field to an atmospheric-pressure plasma jet on radical generation at the plasma-surface interface and bactericidal function

机译:辅助磁场对等离子体表面界面自由基产生大气压等离子体射流的影响及杀菌功能

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摘要

A configuration of magnetic-assisted-plasma (MAP) on helium-based atmospheric-pressure plasma jet (APPJ) with an axial magnetic-field of 0.587 T is proposed, which provides good ability for killing bacteria Escherichia coli on the agar surface. Optically, we confirmed that the MAP increased approximately 2.4 times in the electron density estimated by the Stark broadening of H-beta line emission, and approximately 1.5 times enhancement of atomic oxygen concentration measured by vacuum ultraviolet absorption spectroscopy (VUVAS). Moreover, the generation of hydroxyl radical in the water increased 1.5 times, confirmed by the spin-trapping electron spin-resonance technique. In addition, the bactericidal experiments demonstrated 2.4 times higher for E. coli by the MAP treatment. The MAP configuration is proposed to be highly useful for future bio-medical applications by enhancing the radical generation at the plasma/substrate interface region.
机译:提出了一种磁辅助等离子体(MAP)的基于氦的大气压等离子体射流(APPJ)的构造,其具有0.587t的轴向磁场,这提供了杀死琼脂表面上的细菌大肠杆菌的良好能力。 光学地,我们确认地图通过STAK扩大H-Beta线排放估计的电子密度增加了大约2.4倍,并通过真空紫外线吸收光谱(Vuvas)测量的原子氧浓度的增强约1.5倍。 此外,在水中产生羟基的产生增加1.5倍,通过旋转捕获电子旋转谐振技术证实。 此外,通过地图治疗,杀菌实验表明大肠杆菌的2.4倍。 通过增强等离子体/衬底接口区域的激进产生,提出了地图配置对未来的生物医学应用非常有用。

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