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气相中钍和铀的碳化物团簇阳离子:钍和铀的相似性和差异性。

Thorium and uranium carbide cluster cations in the gas phase: similarities and differences between thorium and uranium.

机构信息

Unidade de Ciências Químicas e Radiofarmacêuticas, IST/ITN, Instituto Superior Técnico, Universidade Técnica de Lisboa , 2686-953 Sacavém, Portugal.

出版信息

Inorg Chem. 2013 Oct 7;52(19):10968-75. doi: 10.1021/ic401058b. Epub 2013 Sep 18.

DOI:10.1021/ic401058b
PMID:24047411
Abstract

Laser ionization of AnC4 alloys (An = Th, U) yielded gas-phase molecular thorium and uranium carbide cluster cations of composition An(m)C(n)(+), with m = 1, n = 2-14, and m = 2, n = 3-18, as detected by Fourier transform ion-cyclotron-resonance mass spectrometry. In the case of thorium, Th(m)C(n)(+) cluster ions with m = 3-13 and n = 5-30 were also produced, with an intriguing high intensity of Th13C(n)(+) cations. The AnC13(+) ions also exhibited an unexpectedly high abundance, in contrast to the gradual decrease in the intensity of other AnC(n)(+) ions with increasing values of n. High abundances of AnC2(+) and AnC4(+) ions are consistent with enhanced stability due to strong metal-C2 bonds. Among the most abundant bimetallic ions was Th2C3(+) for thorium; in contrast, U2C4(+) was the most intense bimetallic for uranium, with essentially no U2C3(+) appearing. Density functional theory computations were performed to illuminate this distinction between thorium and uranium. The computational results revealed structural and energetic disparities for the An2C3(+) and An2C4(+) cluster ions, which elucidate the observed differing abundances of the bimetallic carbide ions. Particularly noteworthy is that the Th atoms are essentially equivalent in Th2C3(+), whereas there is a large asymmetry between the U atoms in U2C3(+).

摘要

采用激光电离 AnC4 合金(An = Th,U),通过傅里叶变换离子回旋共振质谱检测到气相分子钍和铀碳化物团簇阳离子,其组成为 An(m)C(n)(+),其中 m = 1,n = 2-14,m = 2,n = 3-18。对于钍,还产生了 m = 3-13 和 n = 5-30 的 Th(m)C(n)(+) 簇离子,其中 Th13C(n)(+) 阳离子的强度非常高。AnC13(+) 离子的丰度也出人意料地高,与随着 n 值的增加其他 AnC(n)(+) 离子强度逐渐降低形成鲜明对比。AnC2(+) 和 AnC4(+) 离子的高丰度与由于强金属-C2 键而增强的稳定性一致。最丰富的双金属离子是钍的 Th2C3(+);相比之下,对于铀,U2C4(+) 是最强烈的双金属离子,几乎没有出现 U2C3(+)。进行了密度泛函理论计算,以阐明钍和铀之间的这种区别。计算结果揭示了 An2C3(+) 和 An2C4(+) 团簇离子的结构和能量差异,阐明了观察到的双金属碳化物离子的不同丰度。特别值得注意的是,在 Th2C3(+) 中 Th 原子基本相同,而在 U2C3(+) 中 U 原子之间存在很大的不对称性。

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