首页> 外文期刊>Analytical Chemistry >GENERAL METHOD FOR THE DETERMINATION OF STABILITY CONSTANTS OF LANTHANIDE ION CHELATES BY LIGAND LIGAND COMPETITION - LASER-EXCITED EU3+ LUMINESCENCE EXCITATION SPECTROSCOPY
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GENERAL METHOD FOR THE DETERMINATION OF STABILITY CONSTANTS OF LANTHANIDE ION CHELATES BY LIGAND LIGAND COMPETITION - LASER-EXCITED EU3+ LUMINESCENCE EXCITATION SPECTROSCOPY

机译:配体配位竞争-激光激发EU3 +发光激发光谱法测定镧系离子螯合物的稳定常数的一般方法。

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A highly sensitive, convenient, direct spectroscopic method for the measurement of stability constants of Eu3+ ion complexes of multidentate ligands is described. Eu3+ ion complexation is monitored by means of (7)Fo --> (5)Do excitation spectroscopy. The method involves the competition against one another, of two ligands, one (L') of known and one (L) of unknown stability constant for its Eu3+ complex. With laser excitation at a particular wavelength (in the 578-581 mm range), the excitation intensity of EuL and/or EuL' is measured by either a time-resolved method, if the excited state lifetimes of EuL and EuL' are sufficiently different, or in a non-time-resolved manner, if the emission intensities (lambda(em) = 614 nm) of EuL and EuL' are significantly different at the exciting wavelength. These data lead to the determination of relative conditional stability constants (K-rel = [EuL'][L]t/[EuL][L'](t)) of the two ligands which, with knowledge of the protonation constants of the ligands, can be used to calculate the thermodynamic formation constant of the fully deprotonated Ligand, L. Using ethylenediaminetetraacetic acid (edta) as the reference ligand, formation constants for the 1:1 complexes of Eu3+ with N-(2-hydroxyethyl)ethylenediaminetriacetic acid (hedta), diethylenetriaminepentaacetic acid (dtpa), and 1,4,7,10-tetraazacyclododecane-1,4,7-triacetic acid (do3a) were determined, all in good to excellent agreement with their literature values. The method was also applied to the Eu3+-dtpa-dien [1,4,7-tris(carboxymetkyl)-9, 17-dioxo-1,4,7,10,13,16-hexaazacyclooctadecane] system, where the species EuH(dtpadien)(+), Eu(dtpa-dien), and Eu(OH)(dtpa-dien)(-) exist in different pH regions. The respective formation constants are log K-EuL = 17.2 +/- 0.1, log K-EuHL = 14.2 +/- 0.2, and, for the reaction EuL + OH- = Eu(OH)L(-), log K-OH = 5.7 +/- 0.2 (pK(a) = 8.3 +/- 0.2). Advantages of the present method include high sensitivity(1-10 pM concentrations of Eu3+ and ligand), small sample volumes (1 mL, or less), and the ability to detect directly and characterize the species present in solution under particular pH conditions using excitation spectroscopy and lifetime measurements.
机译:描述了一种高灵敏,方便,直接的光谱方法,用于测量多齿配体的Eu3 +离子络合物的稳定常数。通过(7)Fo->(5)Do激发光谱监测Eu3 +离子的络合。该方法涉及两种配体相互竞争,一种配体的Eu3 +配合物具有已知的(L')已知稳定性常数和一种(L)未知的稳定性常数。对于特定波长(在578-581 mm范围内)的激光激发,如果EuL和EuL'的激发态寿命足够不同,则可以通过时间分辨方法来测量EuL和/或EuL'的激发强度。 ,或者以非时间分辨的方式,如果EuL和EuL'在激发波长处的发射强度(λ(em)= 614 nm)显着不同。这些数据导致确定了两个配体的相对条件稳定性常数(K-rel = [EuL'] [L] t / [EuL] [L'](t)),这些条件根据已知的质子化常数配体可用于计算完全去质子化的配体L的热力学形成常数。以乙二胺四乙酸(edta)为参考配体,Eu3 +与N-(2-羟乙基)乙二胺三乙酸的1:1配合物的形成常数测定了Hedta,二亚乙基三胺五乙酸(dtpa)和1,4,7,10-四氮杂环十二烷-1,4,7-三乙酸(do3a),所有文献均与它们的文献值非常吻合。该方法还适用于Eu3 + -dtpa-dien [1,4,7-三(羧甲基)-9,17-二氧-1,4,7,10,13,16-六氮杂环十八烷]系统,其中EuH物种(dtpadien)(+),Eu(dtpa-dien)和Eu(OH)(dtpa-dien)(-)存在于不同的pH区域。各自的形成常数为log K-EuL = 17.2 +/- 0.1,log K-EuHL = 14.2 +/- 0.2,对于反应EuL + OH- = Eu(OH)L(-),log K-OH = 5.7 +/- 0.2(pK(a)= 8.3 +/- 0.2)。本方法的优点包括灵敏度高(Eu3 +和配体的浓度为1-10 pM),样品量小(1 mL或更少),以及在特定pH条件下使用激发能直接检测和表征溶液中存在的物质的能力光谱学和寿命测量。

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