School of Physics and MOE Key Laboratory of Weak-Light Nonlinear Photonics, Nankai University, Tianjin 300071, China.
Center for High Pressure Science and Technology Advanced Research, Beijing 100193, China.
Nat Chem. 2017 May;9(5):440-445. doi: 10.1038/nchem.2716. Epub 2017 Feb 6.
Helium is generally understood to be chemically inert and this is due to its extremely stable closed-shell electronic configuration, zero electron affinity and an unsurpassed ionization potential. It is not known to form thermodynamically stable compounds, except a few inclusion compounds. Here, using the ab initio evolutionary algorithm USPEX and subsequent high-pressure synthesis in a diamond anvil cell, we report the discovery of a thermodynamically stable compound of helium and sodium, NaHe, which has a fluorite-type structure and is stable at pressures >113 GPa. We show that the presence of He atoms causes strong electron localization and makes this material insulating. This phase is an electride, with electron pairs localized in interstices, forming eight-centre two-electron bonds within empty Na cubes. We also predict the existence of NaHeO with a similar structure at pressures above 15 GPa.
氦通常被认为是化学惰性的,这是由于其极其稳定的满壳层电子构型、零电子亲合势和无与伦比的电离势。除了少数包含物外,它不形成热力学稳定的化合物。在这里,我们使用从头算进化算法 USPEX 和随后在金刚石砧细胞中的高压合成,报告了氦和钠的热力学稳定化合物 NaHe 的发现,它具有萤石型结构,在压力>113 GPa 下稳定。我们表明,氦原子的存在导致强烈的电子局域化,并使这种材料绝缘。这个相是一种电子化物,电子对定域在间隙中,在空的 Na 立方体中形成八中心二电子键。我们还预测了在 15 GPa 以上压力下具有类似结构的 NaHeO 的存在。