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首页> 外文期刊>Angewandte Chemie >Colossal Stability of Gas-Phase Trianions: Super-Pnictogens
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Colossal Stability of Gas-Phase Trianions: Super-Pnictogens

机译:气相性巨大巨大稳定性:超级肺炎

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摘要

Multiply charged negative ions are ubiquitous in nature. They are stable as crystals because of charge compensating cations; while in solutions, solvent molecules protect them. However, they are rarely stable in the gas phase because of strong electrostatic repulsion between the extra electrons. Therefore, understanding their stability without the influence of the environment has been of great interest to scientists for decades. While much of the past work has focused on dianions, work on triply charged negative ions is sparse and the search for the smallest trianion that is stable against spontaneous electron emission or fragmentation continues. Stability of BeB11(X)(12)(3-) (X=CN, SCN, BO) trianions is demonstrated in the gas phase, with BeB11(CN)(12)(3-) exhibiting colossal stability against electron emission by 2.65eV and against its neutral adduct by 15.85eV. The unusual stability of these trianions opens the door to a new class of super-pnictogens with potential applications in aluminum-ion batteries.
机译:繁殖的负离子在自然界中普遍存在。由于补偿阳离子,它们作为晶体稳定;在解决方案中,溶剂分子保护它们。然而,由于额外电子之间的静电排斥力,它们很少在气相中稳定。因此,在没有环境影响的情况下了解他们的稳定性对科学家几十年来的感受很大。虽然过去的工作中的大部分工作都集中在圆领上,但在三次带电负离子上的工作是稀疏的,并且寻找稳定对抗自发电子发射或碎片的最小的TriaNion。在气相中对BeB11(X)(12)(3-)(X = CN,SCN,BO)TriaNions的稳定性,BEB11(CN)(12)(3-)在2.65的情况下表现出巨大的电子发射稳定性通过15.85ev反对其中立加合物。这些Trianions的不寻常稳定性为一类新的超肺蛋虫,具有铝离子电池中的潜在应用。

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