首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Dioxouranium(VI)-carboxylate complexes A calorimetric and potentiometric investigation of interaction with oxalate at infinite dilution and in NaCl aqueous solution at I=1.0 mol L-1 and T=25°C
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Dioxouranium(VI)-carboxylate complexes A calorimetric and potentiometric investigation of interaction with oxalate at infinite dilution and in NaCl aqueous solution at I=1.0 mol L-1 and T=25°C

机译:Dioxouranium(VI)-羧酸盐络合物在I = 1.0 mol L-1和T = 25°C的条件下,在无限稀释和NaCl水溶液中与草酸盐相互作用的量热法和电位法研究

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In this paper we investigated the interactions between dioxouranium(VI) and oxalate using (H+-glass electrode) potentiometry and titration calorimetry.Potentiometric measurements were carried out in NaCl aqueous solutions and at T= 25 °C in a wide range of experimental conditions (concentrations,ligand/metal molar ratio,pH,titrants) at low ionic strength values (I<= 0.090 mol L-1,without supporting electrolyte) and at I= 1.0 mol L-1;different procedures were employed for the acquisition of experimental data and careful analysis of these data performed.In all cases the speciation model that best fits experimental data takes into account the formation of the binary mononuclear species UO2(ox)0,UO2(ox)_2~(2-),UO2(qx)_3~(4-) widely reported in literature,the ternary hydroxyl mononuclear species UO2(ox)OH-,UO2(ox)(OH)_2~(2_),UO2(ox)2OH3-,UO2(ox)3OH5-,the protonated ternary mononuclear species UO2(ox)3H3- and the binuclear species (UO2)2(ox)_5~(6-).Calorimetric measurements were carried out following similar procedures and in the same experimental conditions as employed for the potentiometric measurements at I= 1.0 mol L-1 in NaCl.The stability of UO_2~(2+)-oxalate2- complexes is fairly high and their main contribution to stability is entropic in nature.Some linear empirical relationships were found which make it possible to calculate (i) the contribution of a single bond: DELTA G_(sb)~o = -16.6 +- 0.2 kJ mol-1 and T DELTA S_(sb)~o = 16.2 +- 0.5 kJ mol-1;(ii) chelate stabilisation per ring: DELTA G_r~o = -1.30 +- 0.04 kl mol-1 and T DELTA S_r~o = 1.27 +- 0.23 kJ mol-1 and (iii) the mean stability of negatively charged Na+-ion pair complexes: log~T K=(0.46+-0.02) centre dot |z| (z = charge of complex species),DELTA G~o = -(2.60 +- 0.1)- |z| kJ mol-1 and T DELTA S~o = 2.5 +- 0.5 kJ mol-1.Both potentiometric and calorimetric results provide evidence of the penta-coordination of the species UO2(ox)3~(4-).SIT parameters were calculated from the data at 1=0 and I= 1.02 mol kg-1.Comparisons are made with literature data.An insoluble dioxouranium(VI) ternary complex was synthesised (at I= 1.0 molL-1 in NaCl) and characterised by thermoanalysis and elemental analysis.
机译:在本文中,我们使用(H +-玻璃电极)电位法和滴定量热法研究了二氧杂鎓(VI)与草酸盐之间的相互作用。在NaCl水溶液中和T = 25°C的广泛实验条件下(低离子强度值(I <= 0.090 mol L-1,无支持电解质)和I = 1.0 mol L-1时的浓度,配体/金属摩尔比,pH,滴定剂;采用不同的程序进行实验在所有情况下,最适合实验数据的形态模型考虑了二元单核物种UO2(ox)0,UO2(ox)_2〜(2-),UO2(qx)的形成)_3〜(4-)在文献中广泛报道,三元羟基单核物质UO2(ox)OH-,UO2(ox)(OH)_2〜(2 _),UO2(ox)2OH3-,UO2(ox)3OH5- ,质子化的三元单核物种UO2(ox)3H3-和双核物种(UO2)2(ox)_5〜(6-)。进行了比色法在ICl = 1.0 mol L-1的NaCl中,采用类似的程序,在相同的实验条件下进行电位测定。UO_2〜(2 +)-草酸盐2-配合物的稳定性相当高,其对稳定性的主要贡献是熵发现了一些线性经验关系,可以计算(i)单键的贡献:DELTA G_(sb)〜o = -16.6 +-0.2 kJ mol-1和T DELTA S_(sb)〜 o = 16.2 +-0.5 kJ mol-1;(ii)每个环的螯合物稳定性:ΔG_r〜o = -1.30 +-0.04 kl mol-1和T DELTA S_r〜o = 1.27 +-0.23 kJ mol-1和( iii)带负电的Na +离子对络合物的平均稳定性:log〜TK =(0.46 + -0.02)中心点| z | (z =复杂物种的电荷),ΔG〜o =-(2.60 +-0.1)-| z | kJ mol-1和T DELTA S〜o = 2.5 +-0.5 kJ mol-1。电位和量热结果均提供了UO2(ox)3〜(4-)物种五配位的证据。根据1 = 0和I = 1.02 mol kg-1的数据,与文献数据进行比较,合成了不溶性二氧铀(VI)三元配合物(NaCl中I = 1.0 molL-1),并通过热分析和元素分析进行​​了表征分析。

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