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On the conformation of the actinide-selective hydrophilic SO3-Ph-BTP ligand in aqueous solution. A computational study

机译:水溶液中。系元素选择性亲水性SO3-Ph-BTP配体的构象计算研究

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We studied the conformation and hydration of the SO3-Ph-BTP ligand used as hydrophilic actinide and lanthanide separating agent using DFT methods. To avoid a large conformational space, changes in conformation and hydration were considered step-by-step. The central BTP system of the SO3-Ph-BTP ligand can be slightly non planar in the gas phase, but in an aqueous solution it adopts the planar BTP-cc-aq conformation, known from metal complexes with BTP-like ligands. Out of a dozen conformations of protonated BTP, the most stable appeared to be the one protonated at the pyridine N-atom. The analysis of the conformation and hydration of the larger Ph-BTP system indicates that in water the proton dissociates from the protonated BTP core to form a hydronium ion, which additionally interacts with two water molecules H-bonded to triazine's N2-atoms. Considering 24 different protonated Ph-BTP conformers surrounded by five water molecules led us to the conclusion that the core of the most stable form is practically identical to the most stable hydrated and protonated BTP form. Modelling the hydration of both every part of the SO3-Ph-BTP ligand independently and'the whole SO3-Ph-BTP ligand indicated that the hydronium ion formed near the SO3H groups can migrate and be stabilized near the center of the SO3-Ph-BTP ligand. Thus, in the process of actinide and lanthanide extraction from acidic solutions, the metal ions compete with the hydronium ion for the position at the ligand center. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们使用DFT方法研究了用作亲水性act系元素和镧系元素分离剂的SO3-Ph-BTP配体的构象和水合作用。为了避免较大的构象空间,逐步考虑了构象和水合的变化。 SO3-Ph-BTP配体的中央BTP系统在气相中可以是稍微非平面的,但是在水溶液中,它采用平面BTP-cc-aq构象,这是从具有BTP样配体的金属配合物中得知的。在十二种质子化的BTP构象中,最稳定的似乎是在吡啶N原子上质子化的一种。对较大的Ph-BTP系统的构象和水化的分析表明,质子在水中从质子化的BTP核解离形成氢离子,该氢离子还与H键合在三嗪N2-原子上的两个水分子相互作用。考虑到被五个水分子包围的24个不同的质子化的Ph-BTP构象异构体,我们得出以下结论:最稳定形式的核心实际上与最稳定的水合和质子化BTP形式相同。对SO3-Ph-BTP配体的每个部分和整个SO3-Ph-BTP配体的水合作用分别进行建模,表明在SO3-H-基团附近形成的水合氢离子可以迁移并稳定在SO3-Ph-BTP的中心附近。 BTP配体。因此,在从酸性溶液中提取of系元素和镧系元素的过程中,金属离子与水合氢离子竞争配体中心的位置。 (C)2016 Elsevier B.V.保留所有权利。

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