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Generation mechanism of hydroxyl radical species and its lifetime prediction during the plasma-initiated ultraviolet (UV) photolysis

机译:等离子体引发的紫外光解过程中羟基自由基种类的生成机理及其寿命预测

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摘要

Through this work, we have elucidated the mechanism of hydroxyl radicals (OH) generation and its life time measurements in biosolution. We observed that plasma-initiated ultraviolet (UV) photolysis were responsible for the continues generation of OH species, that resulted in OH to be major reactive species (RS) in the solution. The density and lifetime of OH species acted inversely proportional to each other with increasing depth inside the solution. The cause of increased lifetime of OH inside the solution is predicted using theoretical and semiempirical calculations. Further, to predict the mechanism of conversion of hydroxide ion (OH) to OH or H2O2 (hydrogen peroxide) and electron, we determined the current inside the solution of different pH. Additionally, we have investigated the critical criterion for OH interaction on cancer cell inducing apoptosis under effective OH exposure time. These studies are innovative in the field of plasma chemistry and medicine.
机译:通过这项工作,我们阐明了在生物溶液中羟基自由基(OH )生成的机理及其寿命测量。我们观察到等离子体引发的紫外线(UV)光解是OH 物种持续生成的原因,这导致OH 成为主要的反应物种(RS)。解决方案。 OH 种类的密度和寿命随着溶液内部深度的增加成反比。使用理论和半经验计算预测了溶液内部OH 使用寿命增加的原因。此外,为了预测氢氧根离子(OH -)转换为OH 或H2O2(过氧化氢)和电子的机理,我们确定了不同溶液内部的电流。 pH值此外,我们研究了在有效OH 暴露时间下OH 相互作用对癌细胞诱导凋亡的关键标准。这些研究在血浆化学和医学领域是创新的。

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