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首页> 外文期刊>Analytical chemistry >Using Water Raman Intensities To Determine the Effective Excitation and Emission Path Lengths of Fluorophotometers for Correcting Fluorescence Inner Filter Effect
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Using Water Raman Intensities To Determine the Effective Excitation and Emission Path Lengths of Fluorophotometers for Correcting Fluorescence Inner Filter Effect

机译:使用水拉曼强度确定荧光光度计的有效激发和发射路径长度,以校正荧光内部过滤器的影响

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摘要

Fluorescence and Raman inner filter effects (IFE) cause spectral distortion and nonlinearity between spectral signal intensity with increasing analyte concentration. Convenient and effective correction of fluorescence IFE has been an active research goal for decades. Presented herein is the finding that fluorescence and Raman IFE can be reliably corrected using the equation I-corr/I-obsd = 10(dxAx) (+ dmAm) when the effective excitation and emission path lengths, d(x) and d(m), of a fluorophotometer are determined by simple linear curve-fitting of Raman intensities of a series of water Raman reference samples that have known degrees of Raman IFEs. The path lengths derived with one set of Raman measurements at one specific excitation wavelength are effective for correcting fluorescence and Raman IFEs induced by any chromophore or fluorophore, regardless of the excitation and emission wavelengths. The IFE-corrected fluorescence intensities are linearly correlated to fluorophore concentration over 5 orders of magnitude (from 5.9 nM to 0.59 mM) for 2-aminopurine in a 1 cm x 0.17 cm fluorescence cuvette. This water Raman-based method is easy to implement. It does not involve complicated instrument geometry determination or difficult data manipulation. This work should be of broad significance to physical and biological sciences given the popularity of fluorescence techniques in analytical applications.
机译:荧光和拉曼内部滤光器效应(IFE)会导致光谱失真以及光谱信号强度与分析物浓度增加之间的非线性关系。方便有效的荧光IFE校正数十年来一直是活跃的研究目标。本文提出的发现是,当有效激发和发射路径长度d(x)和d(m)有效时,可以使用公式I-corr / I-obsd = 10(dxAx)(+ dmAm)可靠地校正荧光和拉曼IFE。荧光光度计的)是通过一系列具有已知拉曼IFE程度的水拉曼参考样品的拉曼强度的简单线性曲线拟合确定的。用一组拉曼测量值在一个特定激发波长处得出的路径长度可有效地校正由任何发色团或荧光团引起的荧光和拉曼IFE,而与激发和发射波长无关。在1 cm x 0.17 cm的荧光比色杯中,IFE校正的荧光强度与2个氨基嘌呤的5个数量级(从5.9 nM到0.59 mM)的荧光团浓度线性相关。这种基于拉曼水的方法易于实现。它不涉及复杂的仪器几何形状确定或困难的数据操作。鉴于荧光技术在分析应用中的普及,这项工作对物理和生物科学具有广泛的意义。

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