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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Electron-Transfer-Enhanced Cation-Cation Interactions in Homo- and Heterobimetallic Actinide Complexes: A Relativistic Density Functional Theory Study
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Electron-Transfer-Enhanced Cation-Cation Interactions in Homo- and Heterobimetallic Actinide Complexes: A Relativistic Density Functional Theory Study

机译:电子转移增强的阳离子阳离子相互作用在均匀和异质型致动络合物中:一种相对论的密度函数理论研究

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摘要

To provide deep insight into cation-cation interactions (CCIs) involving hexavalent actinyl species that are major components in spent nuclear fuel and pose important implications for the effective removal of radiotoxic pollutants in the environment, a series of homo- and heterobimetallic actinide complexes supported by cyclopentadienyl (Cp) and polypyrrolic macrocycle (H4L) ligands were systematically investigated using relativistic density functional theory. The metal sort in both parts of (THF)(H2L)(OAn(VI)O) and (An')Cp-III(3) from U to Np to Pu, as well as the substituent bonding to Cp from electron-donating Me to H to electron-withdrawing Cl, SiH3, and SiMe3, was changed. Over 0.70 electrons are unraveled to transfer from the electron-rich U-III to the electron-deficient An(VI) of the actinyl moiety, leading to a more stable An(V)-U-IV isomer; in contrast, uranylneptunium and uranylplutonium complexes behave as electron-resonance structures between VI-III and V-IV. These were further corroborated by geometrical and electronic structures. The energies of CCIs (i.e., O-exo-An' bonds) were calculated to be -19.6 to -41.2 kcal/mol, affording those of OUO-Np (-23.9 kcal/mol) and OUO-Pu (-19.6 kcal/mol) with less electron transfer (ET) right at the low limit. Topological analyses of the electron density at the O-exo-An' bond critical points demonstrate that the CCIs are ET or dative bonds in nature. A positive correlation has been built between the CCIs' strength and corresponding ET amount. It is concluded that the CCIs of O-exo-An' are driven by the electrostatic attraction between the actinyl oxo atom (negative) and the actinide ion (positive) and enhanced by their ET. Finally, experimental syntheses of (THF)(H2L)((OUO)-O-VI)(An')Cp-III(3) (An' = U and Np) were well reproduced by thermodynamic calculations that yielded negative free energies in a tetrahydrofuran solution but a positive one for their uranylplutonium analogue, which was synthetically inaccessible.
机译:提供深入了解涉及六价辐射物种的阳离子相互作用(CCIS),这些辐射物种是废核燃料中的主要组成部分,并对环境中有效去除无放射性毒性污染物的重要意义,一系列的同性恋和异常的神光络合物使用相对论的密度函数理论系统地研究了环戊二烯基(CP)和聚吡咯型宏循环(H4L)配体。从U到NP到PU的(THF)(H2L)(OAN(VI))(OAN(VI)O)(OAN(VI)O)和(AN)CP-III(3)的两部分中的金属分类,以及来自电子捐赠的取代基与CP的取代基我到返回的电子撤离CL,SIH3和SIME3。未加工超过0.70的电子以从富含电子的U-III转移到抗溶胶部分的电子缺陷(VI),导致更稳定的(v)-u-IV异构体;相比之下,铀酰钠和铀酰丙酸铀酸盐在VI-III和V-IV之间表现为电子 - 谐振结构。这些通过几何和电子结构进一步证实。 CCIS的能量(即O-EXO-A'键)计算为-19.6至-41.2千卡/摩尔,得到OUO-NP(-23.9kcal / mol)和Ouo-pu(-19.6 kcal /摩尔)在低限度下较少电子转移(ET)。 O-EXO-AN键关键点处的电子密度的拓扑分析表明CCIS是IT或DIST的性质。在CCIS的强度和相应的ET金额之间建立了正相关。得出结论,O-EXO-AN'的CCI由抗氨基氧代原子(阴性)与散曲离子(阳性)之间的静电吸引力驱动,并通过其增强。最后,通过热力学计算良好地再现(THF)((OUO)(OUO)((OUO)-O-VI)((OUO)-O-VI)((OUO)-O-VI)(AN')CP-III(3)(AN = U和NP)的实验合成四氢呋喃溶液,但它们用于其铀酰丙烯酸铝的阳性溶液,其合成可接近。

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