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Resonance Rayleigh scattering spectra, non-linear scattering spectra of tetracaine hydrochloride-erythrosin system and its analytical application

机译:盐酸丁卡因-赤藓红体系的共振瑞利散射光谱,非线性散射光谱及其分析应用

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The interaction between erythrosine (ET) and tetracaine hydrochloride (TA) was studied by resonance Rayleigh scattering (RRS). frequency doubling scattering (FDS) and second-order scattering (SOS) combining with absorption spectrum. In a weak acidic medium of Britton-Robinson (BR) buffer solution of pH 4.5, erythrosine reacted with tetracaine hydrochloride to form I A ion-association complex. As a result, the new spectra of RRS, SOS and FDS appeared and their intensities enhanced greatly. The maximum peaks of RRS, SOS and FDS were at 342 nm, 680 nm and 380 nm, respectively. The intensities of the three scattering were directly proportional to the concentration of TA in the range of 0.008-4.2 mu g mL(-1) for RRS, 0.027-4.2 mu g mL(-1) for SOS and 0.041-4.2 mu g mL(-1) for FDS. The methods had very high sensitivities and good selectivities, and the detection limits were 0.003 mu g mL(-1) for RRS, 0.008 mu g mL(-1) for SOS and 0.012 mu gmL(-1) for FDS, respectively. Therefore, a new method was developed to determinate trace amounts of TA. The recovery for the determination of TA in blood serum and urine samples was between 97.0% and 103.8%. In this study, mean polarizability was calculated by AMI quantum chemistry method. In addition, the reasons for the enhancement of scattering spectra and the energy transfer between absorption, fluorescence and RRS were discussed. Crown Copyright (C) 2008 Published by Elsevier B.V. All rights reserved.
机译:通过共振瑞利散射(RRS)研究了赤藓碱(ET)和盐酸丁卡因(TA)之间的相互作用。倍频散射(FDS)和二阶散射(SOS)与吸收光谱相结合。在pH 4.5的Britton-Robinson(BR)缓冲溶液的弱酸性介质中,赤藓红与盐酸丁卡因反应形成I A离子缔合配合物。结果,出现了RRS,SOS和FDS的新光谱,并且它们的强度大大增强。 RRS,SOS和FDS的最大峰分别在342 nm,680 nm和380 nm。三种散射的强度与TA的浓度成正比,对于RRS为0.008-4.2μg mL(-1),对于SOS为0.027-4.2μg mL(-1)和0.041-4.2μg mL (-1)对于FDS。该方法具有很高的灵敏度和良好的选择性,RRS的检出限分别为0.003μg mL(-1),SOS的检出限为0.008μg mL(-1)和FDS的检出限为0.012μg mL(-1)。因此,开发了一种测定痕量TA的新方法。血清和尿液样品中TA的测定回收率在97.0%至103.8%之间。在这项研究中,平均极化率是通过AMI量子化学方法计算的。此外,还讨论了增强散射光谱以及吸收,荧光和RRS之间能量转移的原因。 Crown版权所有(C)2008,Elsevier B.V.保留所有权利。

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