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Bias-tunable two-dimensional magnetic and topological materials

机译:Bias-tunable二维磁场和拓扑材料

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The search for novel two-dimensional (2D) materials is crucial for the development of next generation technologies such as electronics, optoelectronics, electrochemistry and biomedicine. In this work, we designed a series of 2D materials based on endohedral fullerenes and revealed that many of them integrate different functions in a single system, such as ferroelectricity with large electric dipole moments, multiple magnetic phases with both strong magnetic anisotropy and high Curie temperature, and quantum spin Hall effect or quantum anomalous Hall effect with robust topologically protected edge states. We further proposed a new type of topological field-effect transistor. These findings provide a strategy for using fullerenes as building blocks for the synthesis of novel 2D materials which can be easily controlled with a local electric field.
机译:寻找新颖的二维(2 d)材料未来的发展是至关重要的一代技术,如电子、光电子学、电化学和生物医学。基于endohedral富勒烯的二维材料并透露,其中许多集成不同的功能在一个单一的系统,如铁电性与大型电偶极子时刻,与多个磁阶段强磁各向异性、高居里温度和量子自旋霍尔效应量子反常霍尔效应与健壮拓扑保护的边缘状态。提出了一种新型的拓扑场效应晶体管。使用富勒烯的构建块可以合成新颖的二维材料很容易与当地电场控制。

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