Center for High Pressure Science and Technology Advanced Research, 1690 Cailun Rd., Bldg. 6, Pudong, Shanghai 201203, People's Republic of China.
J Chem Phys. 2018 Jul 14;149(2):024306. doi: 10.1063/1.5035454.
Intermetallic lithium compounds have found a wide range of applications owing to their light mass and desirable electronic and mechanical properties. Here, by compressing pure lithium and zinc mixtures in a diamond-anvil cell, we observe a direct reaction forming the stoichiometric compound LiZn, at pressures below 1 GPa. On further compression above 10 GPa, we observe the formation of LiZn, which is the highest lithium content compound to be discovered in the Li-Zn system. Our results constrain the structures of these compounds and their evolution with pressure, furthering our understanding of potentially useful light volume-efficient energy storage materials.
金属间锂化合物由于其轻质量和理想的电子和机械性能而得到了广泛的应用。在这里,我们通过在金刚石对顶压腔中压缩纯锂和锌的混合物,在 1 GPa 以下的压力下观察到直接反应形成化学计量化合物 LiZn。在进一步的 10 GPa 以上的压缩过程中,我们观察到 LiZn 的形成,这是在 Li-Zn 体系中发现的具有最高锂含量的化合物。我们的结果约束了这些化合物的结构及其随压力的演化,进一步加深了我们对潜在有用的轻体积高效储能材料的理解。