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Anomalous Charge State Evolution and Its Control of Superconductivity in M3Al2C (M = Mo W)

机译:异常电荷状态进化及其对M3A12C中超导电性的控制(M = MOW)

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摘要

The charge states of elements dictate the behavior of electrons and phonons in a lattice, either directly or indirectly. Here, we report the discovery of an anomalous charge state evolution in the superconducting M3Al2C (M = Mo, W) system, where electron doping can be achieved through “oxidation.” Specifically, with the continuous removal of electron donor (Al) from the structure, we found an electron doping effect in the negatively charged transition metals. Over a certain threshold, the charge state of transition metals goes through a sudden reversion from negative to positive, which leads to a subsequent structure collapse. Concomitantly, the previous robust superconducting transition temperatures (Tcs) can be flexibly modulated. Detailed analysis reveals the origin of the superconductivity and the intimate relationship between the charge state and the electron-phonon coupling constant. The peculiar charge state in M3Al2C plays an important role in both its structure and superconductivity.
机译:元素的充电状态决定了直接或间接的晶格中的电子和声子的行为。在这里,我们报告了超导M3A12C(M = MO,W)系统中的异常电荷状态演变的发现,其中电子掺杂可以通过“氧化”来实现。具体地,随着来自结构的连续去除电子供体(A1),我们发现在带负电的过渡金属中的电子掺杂效果。在一定阈值上,过渡金属的电荷状态通过突然复位,从负到正阳性,这导致随后的结构塌陷。同时,可以灵活地调制先前的鲁棒超导转变温度(TCS)。详细分析揭示了超导性的起源和充电状态与电子 - 声子耦合恒定之间的密切关系。 M3AL2C中的特殊电荷状态在其结构和超导中起着重要作用。

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