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通过电喷雾电离质谱法研究三价镧系元素与三齿双(二烷基三嗪基)吡啶配体的相互作用。

Trivalent lanthanide interactions with a terdentate bis(dialkyltriazinyl)pyridine ligand studied by electrospray ionization mass spectrometry.

作者信息

Colette Sonia, Amekraz Badia, Madic Charles, Berthon Laurence, Cote Gérard, Moulin Christophe

机构信息

CEA-DEN/DPC/SCPA/LAS(2)O, 91191 Gif-sur-Yvette Cedex, France.

出版信息

Inorg Chem. 2003 Apr 7;42(7):2215-26. doi: 10.1021/ic025894y.

Abstract

The 2,6-bis(5,6-dialkyl-1,2,4-triazin-3-yl)pyridines (DATPs) belong to a new family of extracting agents recently developed in the framework of nuclear fuel reprocessing. These molecules exhibit exceptional properties to separate actinides(III) from lanthanides(III) in nitric acid solutions. A previous work showed that electrospray ionization mass spectrometry (ESI-MS) is a reliable technique to provide solution data such as stoichiometries and conditional stability constants of various DATP complexes with europium and evidenced the unusual capability of DiPTP [bis(di-iso-propyltriazinyl)pyridine] ligand to form 1:3 complexes in nitric acid solution. This latter result is further investigated by considering DiPTP complexation features with the complete lanthanide family. As a starting point of the experimental procedure used for stability constant evaluation, the intensity distribution of ions detected by ESI-MS is studied for solutions containing Ln(NO(3))(3) in water/methanol (1:1 v/v) with the pH value set at 2.8 and 4.6 by HNO(3) additions. At pH 2.8, the nitrate anions are found to prevent lanthanides from processes occurring within the ion source: redox phenomena or gas-phase reactions with methanol which give species such as Ln(MeO)(2). Thus, the total intensity of MS signals from Ln(NO(3))(2)(H(2)O)(p)(MeOH)(n) ions is found proportional to the metal ion concentration. At pH 4.6, with lower nitrate concentration, the nature of the species identified on mass spectra depends on the electronic properties of the lanthanide elements. It is shown that Ln(III) complexation with DiPTP leads to the exclusive formation of 1:3 complexes with the whole lanthanide series which may be due not only to the hydrophobic exterior of the ligand but also to the unusual electronic density distribution in DATP ligands as compared with other aza-aromatic ligands. The conditional stability constants of the 1:3 lanthanide(III) complexes with DiPTP have been determined at pH 2.8 and are found to increase almost regularly from La (log beta(3)(app) = 11.7 +/- 0.1) to Lu (log beta(3)(app) = 16.7 +/- 0.8). Moreover, the kinetic stability of the gas-phase 1:3 complexes obtained by electrospray has been investigated by energy-resolved collision-induced dissociation and provides useful information on the bonding and structure.

摘要

2,6-双(5,6-二烷基-1,2,4-三嗪-3-基)吡啶(DATPs)属于最近在核燃料后处理框架内开发的一类新型萃取剂。这些分子在硝酸溶液中具有从镧系元素(III)中分离锕系元素(III)的优异性能。先前的一项工作表明,电喷雾电离质谱(ESI-MS)是一种可靠的技术,可提供各种DATP与铕配合物的化学计量比和条件稳定常数等溶液数据,并证明了二异丙基三嗪吡啶(DiPTP)[双(二异丙基三嗪基)吡啶]配体在硝酸溶液中形成1:3配合物的非凡能力。通过考虑DiPTP与整个镧系元素家族的络合特征,对后一结果进行了进一步研究。作为用于评估稳定常数的实验程序的起点,研究了通过添加硝酸将pH值设定为2.8和4.6的水/甲醇(1:1 v/v)中含有Ln(NO₃)₃的溶液通过ESI-MS检测到的离子强度分布。在pH 2.8时,发现硝酸根阴离子可防止镧系元素在离子源内发生反应:氧化还原现象或与甲醇的气相反应,从而产生诸如Ln(MeO)₂之类的物质。因此,发现来自Ln(NO₃)₂(H₂O)ₚ(MeOH)ₙ离子的MS信号的总强度与金属离子浓度成正比。在pH 4.6时,由于硝酸根浓度较低,质谱上鉴定出的物质的性质取决于镧系元素的电子性质。结果表明,Ln(III)与DiPTP的络合导致与整个镧系系列排他性地形成1:3配合物,这可能不仅归因于配体的疏水外部,还归因于与其他氮杂芳族配体相比DATP配体中异常的电子密度分布。已确定1:3镧系元素(III)与DiPTP配合物在pH 2.8时的条件稳定常数,发现其从La(logβ₃(app)=11.7±0.1)到Lu(logβ₃(app)=16.7±0.8)几乎呈规律性增加。此外,通过能量分辨碰撞诱导解离研究了通过电喷雾获得的气相1:3配合物的动力学稳定性,并提供了有关键合和结构的有用信息。

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