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Improvement of Inner Filter Effect Correction Based on Determination of Effective Geometric Parameters Using a Conventional Fluorimeter

机译:基于常规荧光计确定有效几何参数的内部滤镜效果校正的改进

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摘要

The most widely used correction of fluorescence intensities for inner filter effects in conventional (90 deg) fluorimeters fails at high absorbance values. We have critically examined this failure, which is caused by the difference between the geometrical parameters (GPs) of the excitation and emission beams in the typical instrument (focused beams) and in the theoretical picture on which the correction is based (collimated beams). We provide two types of experimental measurement of GPs and show that their substitution in the correction equations leads to significant improvements in the linear range of corrected fluorescence. We also demonstrate that mathematical optimizations give greater improvements and that the optimizations yield GPs consistent with experimental measurements. For solutions exhibiting primary inner filter effect only, we have extended the range of linearity of corrected fluorescence to a_(ex) (absorbance per cm) up to 5.3; for systems with both primary and secondary inner filter effects we have achieved linearity for a_(ex) + a_(em) velence 6.7. In all cases linear fits have slopes which agree well with the dilute limit. Different series of one- and two-solute solutions were used to demonstrate effectiveness of our correction methods. We also provide a rationale for the unexpected independence of GPs on excitation and emission bandwidths.
机译:在常规(90度)荧光计中,对于内部滤镜效果,使用最广泛的荧光强度校正在高吸光度值下失败。我们已对这种故障进行了严格的检查,这是由典型仪器(聚焦光束)和校正所基于的理论图片(准直光束)中的激发光束和发射光束的几何参数(GPs)之间的差异引起的。我们提供了两种GP的实验测量方法,并显示了它们在校正方程式中的替代导致校正荧光线性范围的显着改善。我们还证明了数学优化可以带来更大的改进,并且优化可以产生与实验测量结果一致的GP。对于仅表现出主要内部滤光效果的溶液,我们将校正荧光的线性范围扩展到a_(ex)(每厘米的吸光度)至5.3;对于同时具有初级和次级内部滤波效果的系统,我们已经实现了a_(ex)+ a_(em)velence 6.7的线性。在所有情况下,线性拟合的斜率都与稀释极限非常吻合。使用不同系列的一溶质和二溶质溶液来证明我们校正方法的有效性。我们还为GP在激发和发射带宽上的意外独立性提供了理论依据。

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