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用于从锔中高效进行基于尺寸的镅分离的水相配合物。

Aqueous complexes for efficient size-based separation of americium from curium.

作者信息

Jensen Mark P, Chiarizia Renato, Shkrob Ilya A, Ulicki Joseph S, Spindler Brian D, Murphy Daniel J, Hossain Mahmun, Roca-Sabio Adrián, Platas-Iglesias Carlos, de Blas Andrés, Rodríguez-Blas Teresa

机构信息

Chemical Sciences and Engineering Division, Argonne National Laboratory , 9700 S. Cass Ave., Argonne, Illinois 60439, United States.

出版信息

Inorg Chem. 2014 Jun 16;53(12):6003-12. doi: 10.1021/ic500244p. Epub 2014 Jun 3.

Abstract

Complexation of the adjacent actinide ions americium(III) and curium(III) by the ligand N,N'-bis[(6-carboxy-2-pyridyl)methyl]-1,10-diaza-18-crown-6 (H2bp18c6) in aqueous solution was studied to quantify and characterize its americium/curium selectivity. Liquid-liquid extraction and spectrophotometric titration indicated the presence of both fully deprotonated and monoprotonated complexes, An(bp18c6)(+) and An(Hbp18c6)(2+) (An = Am or Cm), at the acidities that would be encountered when treating nuclear wastes. The stability constants of the complexes in 1 M NaNO3 determined using competitive complexation were log β101 = 15.49 ± 0.06 for Am and 14.88 ± 0.03 for Cm, indicating a reversal of the usual order of complex stability, where ligands bind the smaller Cm(III) ion more tightly than Am(III). The Am/Cm selectivity of bp18c6(2-) that is defined by the ratio of the Am and Cm stability constants (β101 Am/β101 Cm = 4.1) is the largest reported so far for binary An(III)-ligand complexes. Theoretical density functional theory calculations using the B3LYP functional suggest that the ligand's size-selectivity for larger 4f- and 5f-element cations arises from steric constraints in the crown ether ring. Enhanced 5f character in molecular orbitals involving actinide-nitrogen interactions is predicted to favor actinide(III) complexation by bp18c6(2-) over the complexation of similarly sized lanthanide(III) cations.

摘要

研究了配体N,N'-双[(6-羧基-2-吡啶基)甲基]-1,10-二氮杂-18-冠-6 (H2bp18c6) 在水溶液中对相邻锕系离子镅(III) 和锔(III) 的络合作用,以量化并表征其对镅/锔的选择性。液-液萃取和分光光度滴定表明,在处理核废料时遇到的酸度条件下,存在完全去质子化和单质子化的络合物,即An(bp18c6)(+) 和An(Hbp18c6)(2+)(An = Am或Cm)。使用竞争络合测定的1 M NaNO3中络合物的稳定常数,对于Am为log β101 = 15.49 ± 0.06,对于Cm为14.88 ± 0.03,这表明通常的络合物稳定性顺序发生了反转,即配体与较小的Cm(III) 离子的结合比Am(III) 更紧密。由Am和Cm稳定常数之比(β101 Am/β101 Cm = 4.1)定义的bp18c6(2-) 的Am/Cm选择性是迄今为止报道的二元An(III)-配体络合物中最大的。使用B3LYP泛函的理论密度泛函理论计算表明,配体对较大的4f和5f元素阳离子的尺寸选择性源于冠醚环中的空间位阻。预测涉及锕系元素-氮相互作用的分子轨道中增强的5f特性有利于bp18c6(2-) 与锕系元素(III) 的络合,而不是与尺寸相似的镧系元素(III) 阳离子的络合。

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