论文标题

六边形钙钛矿作为量子材料

Hexagonal Perovskites as Quantum Materials

论文作者

Nguyen, Loi T., Cava, R. J.

论文摘要

与更熟悉的钙钛矿相比,六边形氧化物钙钛矿可以在其结构框架内面对金属氧气八面的八人体或三角棱镜。这会导致二聚体,三聚体,四聚体或晶体结构中的面部共享八面体链的片段,因此在更短的金属金属距离和比更熟悉的钙钛矿中所见的金属金属金属键和低的金属氧金属键角。面部共享八面体的存在可能会对这些化合物的磁性产生巨大影响,尤其是二聚体材料,已成为许多量子材料指导研究的受试者。六边形氧化物钙钛矿具有当代的兴趣,因为它们在低温下的磁矩或轨道占用量的几何挫折潜力,这与它们作为量子材料的意义尤其重要。因此,已经将几种六角氧化物钙钛矿被确定为在低温下托管量子自旋液态的潜在候选物。我们认为,六边形氧化物钙钛矿是寻找新量子材料的肥沃地面。这篇综述简要描述了许多材料的固态化学。

Hexagonal oxide perovskites, in contrast to the more familiar perovskites, allow for face-sharing of metal-oxygen octahedra or trigonal prisms within their structural frameworks. This results in dimers, trimers, tetramers, or longer fragments of chains of face-sharing octahedra in the crystal structures, and consequently in much shorter metal-metal distances and lower metal-oxygen-metal bond angles than are seen in the more familiar perovskites. The presence of the face-sharing octahedra can have a dramatic impact on magnetic properties of these compounds, and dimer-based materials, in particular, have been the subjects of many quantum-materials-directed studies in materials physics. Hexagonal oxide perovskites are of contemporary interest due to their potential for geometrical frustration of the ordering of magnetic moments or orbital occupancies at low temperatures, which is especially relevant to their significance as quantum materials. As such, several hexagonal oxide perovskites have been identified as potential candidates for hosting the quantum spin liquid state at low temperatures. In our view, hexagonal oxide perovskites are fertile ground for finding new quantum materials. This review briefly describes the solid state chemistry of many of these materials.

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