Binns Jack, Dalladay-Simpson Philip, Wang Mengnan, Gregoryanz Eugene, Howie Ross T
Center for High Pressure Science & Technology Advanced Research (HPSTAR) , Shanghai 201203 , People's Republic of China.
Centre for Science at Extreme Conditions and School of Physics and Astronomy , University of Edinburgh , Edinburgh EH9 3JZ , United Kingdom.
J Phys Chem Lett. 2018 Jun 7;9(11):3149-3153. doi: 10.1021/acs.jpclett.8b01350. Epub 2018 May 29.
High pressure can profoundly affect the electronic structure and reactivity, creating compounds between elements that do not react at ambient conditions. Lithium is known to react with gold and silver; however, no copper compounds are known to date. By compressing mixtures of the elements in diamond-anvil cells, compounds of lithium and copper have been synthesized and characterized by X-ray diffraction for the first time. Pressures as low as 1 GPa lead to the formation of a complex layered phase LiCu, displaying two-dimensional kagomé lattice layers of Cu atoms. With increasing pressure, the layered Cu-Cu bonding is replaced by linear chains of Cu atoms in the high-pressure phase LiCu. Here we show the powerful effects of even modest pressures on the reactivity of lithium, leading to structures of remarkable complexity and low-dimensional transition metal bonding.
高压会深刻影响电子结构和反应活性,促使在环境条件下不发生反应的元素之间形成化合物。锂已知会与金和银发生反应;然而,迄今为止尚无锂与铜的化合物被发现。通过在金刚石对顶砧压腔中对元素混合物进行压缩,首次合成了锂和铜的化合物,并通过X射线衍射对其进行了表征。低至1吉帕的压力就能促使形成一种复杂的层状相LiCu,其呈现出由铜原子构成的二维卡戈梅晶格层。随着压力升高,在高压相LiCu中,层状的铜-铜键被铜原子的线性链所取代。在此,我们展示了即使是适度压力对锂反应活性所产生的强大影响,这种影响导致了具有显著复杂性的结构以及低维过渡金属键。