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Coumarin fluorometry to quantitatively detectable OH radicals in ultrasound aqueous medium

机译:香豆素荧光法可定量检测超声水性介质中的OH自由基

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When ultrasound (US) was exposed to aqueous coumarin solution in air atmosphere, the UV-visible and fluorescence spectra of the probe were measured at different US exposure times. The US exposure was carried out at 43 kHz and 500 kHz with different out-put power. It was found that the 500 kHz US produced umbelliferone fluorescence, while the 43 kHz US had no fluorescence. In addition, the coumarin absorbance at 270 nm maximum was decreased with in cases of the US exposure time. In contrary, the fluorescent intensity of umbelliferone at 460 nm increased with increasing of US exposure time. This exhibited that the coumarin probe was converted to umbelliferone by the US exposure, when the 500 kHz US was operated. This was facted that the coumarin framework was caused with addition of OH groups which was generated by the 500 kHz US. Therefore, the umbelliferone fluorescent became a probe to estimate OH radical in US medium. Furthermore, the chemo-fluorometry showed that the emission maximum of the formed umbelliferone could probe the bulk pHs in the US aqueous medium. (C) 2015 Published by Elsevier B.V.
机译:当超声(US)在空气中暴露于香豆素水溶液时,在不同的US暴露时间下测量探针的UV-可见光谱和荧光光谱。在不同的输出功率下,以43 kHz和500 kHz进行US曝光。发现500 kHz US产生伞形酮荧光,而43 kHz US没有荧光。另外,在美国暴露时间下,最大270 nm的香豆素吸光度降低。相反,随着美国暴露时间的增加,伞形酮在460 nm处的荧光强度增加。这表明当操作500 kHz US时,香豆素探针在US暴露下已转化为伞形酮。事实证明,香豆素骨架是由500 kHz US产生的OH基团的添加引起的。因此,伞形酮荧光剂成为估计美国培养基中OH自由基的探针。此外,化学荧光法显示形成的伞形酮的最大发射量可以探测美国水性介质中的总体pH。 (C)2015由Elsevier B.V.发布

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