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Endohedral cluster intermetallic superconductors: at the frontier between chemistry and physics

机译:Endohedral集群金属间超导体:在化学和物理学之间的前沿

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摘要

When a transition metal combines with an excess of a p-metal, the latter forms endohedral clusters with the number of vertices up to 14. These clusters are the building units of endohedral cluster intermetallic compounds. Although discovered a few decades ago, they have gained renewed interest due to their peculiar crystal and electronic structures and frequently observed superconducting properties. Advances over recent years reveal that endohedral cluster architectures are flexible enough, enabling chemical substitutions and the formation of a series of structurally related phases, where the same clusters can be arranged in different ways. Within the structural series, the superconducting-state parameters, including critical temperature and magnetic field, can be controlled and finely tuned. Herein, we present the most recent results in the chemical properties and superconductivity of endohedral cluster intermetallics and provide an outlook for the field.
机译:当过渡金属与过量的p-金属结合时,后者会形成顶点数最多为14的内面体簇。这些团簇是内面体团簇金属间化合物的构建单元。虽然在几十年前被发现,但由于其独特的晶体和电子结构以及经常观察到的超导特性,它们重新引起了人们的兴趣。近年来的进展表明,内面体团簇结构具有足够的灵活性,能够进行化学置换,形成一系列结构相关的相,相同的团簇可以以不同的方式排列。在结构系列中,超导状态参数,包括临界温度和磁场,可以控制和微调。在此,我们介绍了内面体团簇金属间化合物的化学性质和超导电性的最新结果,并对该领域进行了展望。

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