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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Selective production of atomic oxygen by laser photolysis as a tool for studying the effect of atomic oxygen in plasma medicine
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Selective production of atomic oxygen by laser photolysis as a tool for studying the effect of atomic oxygen in plasma medicine

机译:激光光解法选择性生产原子氧作为研究血浆药物中原子氧作用的工具

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We propose a method for selectively producing O atoms by the laser photolysis of O-3 as a tool for studying the therapeutic effect of O atoms in plasma medicine. A KrF excimer laser (248 nm) irradiates an O-3/He mixture flowing in a quartz tube to photodissociate O-3, which leads to the production of O atoms. The effluent from the quartz tube nozzle can be applied to a target (cells, bacteria, or an affected part). Simulations show that 500 ppm O atoms can be continuously supplied to a target surface at a distance of 3 mm from the quartz tube nozzle if an O-3(2000 ppm)/He mixture is used. The effluent contains only O, O-3, and O-2(a(1)Delta(g)), and does not contain other types of reactive species in contrast to a plasma. Therefore, it can be used to examine the therapeutic effects of O atoms in isolation. Part of the simulation results are experimentally verified by irradiating an O-3/He mixture with a KrF excimer laser.
机译:我们提出了一种通过O-3的激光光解选择性产生O原子的方法,作为研究O原子在血浆药物中的治疗效果的工具。 KrF准分子激光(248 nm)照射在石英管中流动的O-3 / He混合物,使O-3光解离,从而产生O原子。石英管喷嘴的流出物可以施加到目标(细胞,细菌或患处)。模拟表明,如果使用O-3(2000 ppm)/ He混合物,可以将500 ppm O原子连续供应到距石英管喷嘴3 mm的目标表面。流出物仅包含O,O-3和O-2(a(1)Delta(g)),与等离子体相比不包含其他类型的反应性物质。因此,它可用于单独检查O原子的治疗效果。通过用KrF准分子激光照射O-3 / He混合物,对部分仿真结果进行了实验验证。

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