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Discovery of Cu3Pb

机译:发现CU3PB.

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摘要

Materials discovery enables both realization and understanding of new, exotic, physical phenomena. An emerging approach to the discovery of novel phases is high-pressure synthesis within diamond anvil cells, thereby enabling insitu monitoring of phase formation. Now, the discovery via high-pressure synthesis of the first intermetallic compound in the Cu-Pb system, Cu3Pb is reported. Cu3Pb is notably the first structurally characterized mid- to late-first-row transition-metal plumbide. The structure of Cu3Pb can be envisioned as a direct mixture of the two elemental lattices. From this new framework, we gain insight into the structure as a function of pressure and hypothesize that the high-pressure polymorph of lead is a possible prerequisite for the formation of Cu3Pb. Crucially, electronic structure computations reveal band crossings near the Fermi level, suggesting that chemically doped Cu3Pb could be a topologically nontrivial material.
机译:材料发现能够实现和理解新的异国情调的物理现象。 新出现的新阶段发现的方法是金刚石砧座细胞内的高压合成,从而能够促进对相形成的监测。 现在,报道了通过Cu-Pb系统中的第一金属间化合物的高压合成的发现,Cu3Pb。 CU3PB特别是第一个结构表征的中间至第一行过渡金属普明德。 Cu3Pb的结构可以被设想为两个元素格子的直接混合物。 从这个新的框架来看,我们以压力的函数进入结构的洞察力,并假设铅的高压多晶区是形成Cu3Pb的可能先决条件。 至关重要的是,电子结构计算揭示了Fermi水平附近的带交叉,表明化学掺杂的Cu3Pb可以是拓扑非血管材料。

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