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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Europium, uranyl, and thorium-phenanthroline amide complexes in acetonitrile solution: an ESI-MS and DFT combined investigation
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Europium, uranyl, and thorium-phenanthroline amide complexes in acetonitrile solution: an ESI-MS and DFT combined investigation

机译:乙腈溶液中的,、铀酰和or-菲咯啉酰胺配合物:ESI-MS和DFT联合研究

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摘要

The tetradentate N,N'-diethyl-N,N'-ditolyl-2,9-diamide-1,10-phenanthroline (Et-Tol-DAPhen) ligand with hard-soft donor atoms has been demonstrated to be promising for the group separation of actinides from highly acidic nuclear wastes. To identify the formed complexes of this ligand with actinides and lanthanides, electrospray ionization mass spectrometry (ESI-MS) combined with density functional theory (DFT) calculations was used to probe the possible complexation processes. The 1 : 2 Eu-L species ([EuL2(NO3)](2+)) can be observed in ESI-MS at low metal-to-ligand ([M]/[L]) ratios, whereas the 1 : 1 Eu-L species ([EuL(NO3)(2)](+)) can be observed when the [M]/[L] ratio is higher than 1.0. However, ([UO2L(NO3)](+)) is the only detected species for the uranyl complexes. The [ThL2(NO3)(2)](2+) species can be observed at low [M]/[L] ratios; the 1 : 2 species ([ThL2(NO3)](3+)) and a new 1 : 1 species ([ThL(NO3)(3)](+)) can be detected at high [M]/[L] ratios. Collision-induced dissociation (CID) results showed that Et-Tol-DAPhen ligands can coordinate strongly with metal ions, and the coordination moieties remain intact under CID conditions. Natural bond orbital (NBO), molecular electrostatic potential (MEP), electron localization function (ELF), atoms in molecules (AIM) and molecular orbital (MO) analyses indicated that the metal-ligand bonds of the actinide complexes exhibited more covalent character than those of the lanthanide complexes. In addition, according to thermodynamic analysis, the stable cationic M-L complexes in acetonitrile are found to be in good agreement with the ESI-MS results.
机译:已证明具有硬软供体原子的四齿N,N'-二乙基-N,N'-二甲苯基-2,9-二酰胺-1,10-菲咯啉(Et-Tol-DAPhen)配体对于该基团是有前途的从高酸性核废料中分离of系元素。为了鉴定该配体与act系元素和镧系元素形成的络合物,电喷雾电离质谱(ESI-MS)与密度泛函理论(DFT)计算相结合用于探测可能的络合过程。可以在ESI-MS中以低的金属与配体([M] / [L])比率观察到1:2 Eu-L物质([EuL2(NO3)](2+)),而1:1:1当[M] / [L]比大于1.0时,可以观察到Eu-L物种([EuL(NO3)(2)](+)。但是,([UO2L(NO3)](+))是唯一检测出的铀酰配合物。可以在低[M] / [L]比率下观察到[ThL2(NO3)(2)](2+)物种;可以以高[M] / [L]检出1:2种([ThL2(NO3)](3+))和新的1:1种([ThL(NO3)(3)](+))比率。碰撞诱导解离(CID)结果表明,Et-Tol-DAPhen配体可以与金属离子强烈配位,并且在CID条件下配位部分保持完整。天然键轨道(NBO),分子静电势(MEP),电子定位功能(ELF),分子中的原子(AIM)和分子轨道(MO)分析表明indicated系元素配合物的金属-配体键比那些镧系元素络合物。另外,根据热力学分析,发现乙腈中稳定的阳离子M-L配合物与ESI-MS结果非常吻合。

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