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离子液体中的铀酰配位:通过扩展X射线吸收精细结构、紫外可见光谱和分子动力学模拟研究离子液体阴离子、铀酰抗衡离子和Cl⁻阴离子之间的竞争

Uranyl coordination in ionic liquids: the competition between ionic liquid anions, uranyl counterions, and Cl- anions investigated by extended X-ray absorption fine structure and UV-visible spectroscopies and molecular dynamics simulations.

作者信息

Gaillard C, Chaumont A, Billard I, Hennig C, Ouadi A, Wipff G

机构信息

Institut Pluridisciplinaire Hubert Curien, DRS, Chimie Nucléaire, 23 Rue du Loess, 67037 Strasbourg Cedex 2, France.

出版信息

Inorg Chem. 2007 Jun 11;46(12):4815-26. doi: 10.1021/ic061864+. Epub 2007 May 16.

Abstract

The first coordination sphere of the uranyl cation in room-temperature ionic liquids (ILs) results from the competition between its initially bound counterions, the IL anions, and other anions (e.g., present as impurities or added to the solution). We present a joined spectroscopic (UV-visible and extended X-ray absorption fine structure)-simulation study of the coordination of uranyl initially introduced either as UO2X2 salts (X-=nitrate NO3-, triflate TfO-, perchlorate ClO4-) or as UO2(SO4) in a series of imidazolium-based ILs (C4mimA, A-=PF6-, Tf2N-, BF4- and C4mim=1-methyl-3-butyl-imidazolium) as well as in the Me3NBuTf2N IL. The solubility and dissociation of the uranyl salts are found to depend on the nature of X- and A-. The addition of Cl- anions promotes the solubilization of the nitrate and triflate salts in the C4mimPF6 and the C4mimBF4 ILs via the formation of chloro complexes, also formed with other salts. The first coordination sphere of uranyl is further investigated by molecular dynamics (MD) simulations on associated versus dissociated forms of UO2X2 salts in C4mimA ILs as a function of A- and X- anions. Furthermore, the comparison of UO2Cl(4)2-, 2 X- complexes with dissociated X- anions, to the UO2X2, 4 Cl- complexes with dissociated chlorides, shows that the former is more stable. The case of fluoro complexes is also considered, as a possible result of fluorinated IL anion's degradation, showing that UO2F42- should be most stable in solution. In all cases, uranyl is found to be solvated as formally anionic UO2XnAmClp2-n-m-p complexes, embedded in a cage of stabilizing IL imidazolium or ammonium cations.

摘要

在室温离子液体(ILs)中,铀酰阳离子的第一配位层是由其最初结合的抗衡离子(IL阴离子)与其他阴离子(如作为杂质存在或添加到溶液中的阴离子)之间的竞争所导致的。我们对一系列基于咪唑鎓的离子液体(C4mimA,A- = PF6-、Tf2N-、BF4-,C4mim = 1-甲基-3-丁基-咪唑鎓)以及在Me3NBuTf2N离子液体中,以UO2X2盐(X- = 硝酸根NO3-、三氟甲磺酸根TfO-、高氯酸根ClO4-)或UO2(SO4)形式最初引入的铀酰的配位情况进行了联合光谱(紫外可见和扩展X射线吸收精细结构)-模拟研究。发现铀酰盐的溶解度和解离取决于X-和A-的性质。通过形成氯配合物,添加Cl-阴离子促进了硝酸盐和三氟甲磺酸盐在C4mimPF6和C4mimBF4离子液体中的溶解,其他盐也能形成氯配合物。通过分子动力学(MD)模拟,研究了C4mimA离子液体中UO2X2盐的缔合形式与解离形式下铀酰的第一配位层随A-和X-阴离子的变化情况。此外,将UO2Cl(4)2-、2个X-配合物与解离的X-阴离子,与UO2X2、4个Cl-配合物与解离的氯离子进行比较,结果表明前者更稳定。还考虑了氟配合物的情况,这可能是氟化IL阴离子降解的结果,表明UO2F42-在溶液中应该最稳定。在所有情况下,发现铀酰以形式上为阴离子的UO2XnAmClp2-n-m-p配合物形式被溶剂化,嵌入在稳定的IL咪唑鎓或铵阳离子的笼中。

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