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Bipolar magnetic semiconductor properties and spin -dependent Seebeck effects induced by nanoscale graphene domains doped into armchair boron nitride nanoribbons

机译:掺杂到扶手椅氮化物纳米杆间的纳米级石墨烯结构域诱导的双极磁半导体性能和旋转依赖性塞培克效应

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摘要

Inspired by the synthesis of nanometer-scale graphene quantum dots via a doping process in boron nitride (BN) sheets (Adv. Mater. 2019, 1805778), we investigated the magnetic and thermal spin transport properties of armchair BN nanoribbons containing nanoscale graphene domains. It was found that both M-QB and M-QN structures were bipolar magnetic semiconductors (BMSs). Two spin caloritronics devices were designed on the basis of the 15-6B and 15-6N nanoribbons. Spin-dependent Seebeck effects, spin-dependent Seebeck diode effects and thermoelectric diode effects were observed in these devices. This work provides theoretical guidance for the design of new spin caloritronics devices.
机译:通过氮化硼(BN)片材(ADV。Matter.2009,1805778)的掺杂工艺来通过掺杂工艺合成纳米尺度石墨烯量子点的启发,我们研究了含有纳米级石墨烯结构域的扶手椅BN纳米波纳米纳米波纹的磁性和热自旋运输性能。 发现M-QB和M-QN结构都是双极磁半导体(BMS)。 在15-6B和15-6N纳米的基础上设计了两种旋转升降机装置。 在这些器件中观察到旋转依赖的塞贝克效应,旋转依赖塞贝克二极管效应和热电二极管效应。 这项工作为新的自旋升降机设备设计提供了理论指导。

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