首页> 外文期刊>Journal of Solution Chemistry >Aqueous Geochemistry of Rare Earth Elements and Yttrium. XII: Potentiometric Stability Constant Determination of Bis-Tris Complexes with La, Nd, Eu, Gd, Yb, Dy, Er, Lu, and Y
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Aqueous Geochemistry of Rare Earth Elements and Yttrium. XII: Potentiometric Stability Constant Determination of Bis-Tris Complexes with La, Nd, Eu, Gd, Yb, Dy, Er, Lu, and Y

机译:稀土元素和钇的水地球化学。 XII:带有La,Nd,Eu,Gd,Yb,Dy,Er,Lu和Y的Bis-Tris配合物的电位稳定常数测定

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Conditional stability constants of 2-[bis(2-hydroxyethyl)amino]-2(hydroxymethyl)-1,3-propanediol (BT) complexes of trivalent rare earth element (Ln) ions (La, Nd, Eu, Gd, Yb, Dy, Er, Lu) and Y were determined potentiometrically in aqueous NaCl solutions at 30 deg C and 0.1 M ionic strength. Least-squarest fitting shows that, at < 0.04 molal BT, the complexe LnBT~(3+) is dominant, with LnBT_2~(3+) forming a secondary complex, where: Conditional stability constants appear to be directly related to the ionic radius of the trivalent ion in question. The optimal ionic radius, 104-105 pm, yields values of log beta_(21)~* = 10.93 +- 0.63 (Gd) and log beta_(11)~* = 6.83 +- 0.14 (Yb). Complexation drops off seeply on either side of the ideal ionic radius. In relating the stability constants to ionic radius, it is assumed that BT complexes with Gd, Dy, Er, and Lu have coordination number eight, whereas those with La, Nd, and Eu have coordination number nine. The smoothest trend of stability constants with ionic radius is obtained if Yb-BT complexes are assumed to have coordination number nine. These results may reflect the ability of BT to form an ionic radius-specific chelate structure.
机译:三价稀土元素(Ln)离子(La,Nd,Eu,Gd,Yb,在30°C的NaCl水溶液中和0.1M的离子强度下用电位法确定Dy,Er,Lu和Y.最小二乘拟合显示,在<0.04摩尔摩尔BT时,络合物LnBT〜(3+)是主要的,而LnBT_2〜(3+)形成二级络合物,其中:条件稳定性常数似乎与离子半径直接相关三价离子。最佳离子半径为104-105 pm,得出log beta_(21)〜* = 10.93±0.63(Gd)和log beta_(11)〜* = 6.83±0.14(Yb)的值。络合物在理想离子半径的任一侧均渗漏掉。在将稳定常数与离子半径相关联时,假定具有Gd,Dy,Er和Lu的BT配合物的配位数为8,而具有La,Nd和Eu的配位化合物的配位数为9。如果假定Yb-BT配合物的配位数为9,则可获得具有离子半径的稳定常数的最平滑趋势。这些结果可能反映了BT形成离子半径特异性螯合物结构的能力。

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