化学
立方烷
劈理(地质)
氮化物
电泳剂
星团(航天器)
部分
产量(工程)
铀
分子
结晶学
立体化学
催化作用
有机化学
工程类
岩土工程
冶金
材料科学
程序设计语言
断裂(地质)
计算机科学
图层(电子)
作者
Mikhail S. Batov,Iker Del Rosal,Rosario Scopelliti,Farzaneh Fadaei‐Tirani,Ivica Z̆ivković,Laurent Maron,Marinella Mazzanti
摘要
Dinitrogen cleavage provides an attractive but poorly studied route to the assembly of multimetallic nitride clusters. Here, we show that the monoelectron reduction of the dinitrogen complex [{U(OC6H2-But3-2,4,6)3}2(μ-η2:η2-N2)], 1, allows us to generate, for the first time, a uranium complex presenting a rare triply reduced N2 moiety ((μ-η2:η2-N2)•3-). Importantly, the bound dinitrogen can be further reduced, affording the U4N4 cubane cluster, 3, and the U6N6 edge-shared cubane cluster, 4, thus showing that (N2)•3- can be an intermediate in nitride formation. The tetranitride cluster showed high reactivity with electrophiles, yielding ammonia quantitatively upon acid addition and promoting CO cleavage to yield quantitative conversion of nitride into cyanide. These results show that dinitrogen reduction provides a versatile route for the assembly of large highly reactive nitride clusters, with U6N6 providing the first example of a molecular nitride of any metal formed from a complete cleavage of three N2 molecules.
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