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Surface/Interface Chemistry Engineering of Correlated‐Electron Materials: From Conducting Solids Phase Transitions to External‐Field Response

机译:相关电子材料的表面/接口化学工程:通过进行固体相变到外部场响应

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摘要

Correlated electronic materials (CEMs) with strong electron−electron interactions are often associated with exotic properties, such as metal‐insulator transition (MIT), charge density wave (CDW), superconductivity, and magnetoresistance (MR), which are fundamental to next generation condensed matter research and electronic devices. When the dimension of CEMs decreases, exposing extremely high specific surface area and enhancing electronic correlation, the surface states are equally important to the bulk phase. Therefore, surface/interface chemical interactions provide an alternative route to regulate the intrinsic properties of low‐dimensional CEMs. Here, recent achievements in surface/interface chemistry engineering of low‐dimensional CEMs are reviewed, using surface modification, molecule−solid interaction, and interface electronic coupling, toward modulation of conducting solids, phase transitions including MIT, CDW, superconductivity, and magnetism transition, as well as external‐field response. Surface/interface chemistry engineering provides a promising strategy for exploring novel properties and functional applications in low‐dimensional CEMs. Finally, the current challenge and outlook of the surface/interface engineering are also pointed out for future research development.
机译:具有强电子 - 电子相互作用的相关电子材料(CEM)通常与异国特性有关,例如金属 - 绝缘体转变(MIT),电荷密度波(CDW),超导和磁阻(MR),这是下一代的基础凝聚的物品研究和电子设备。当CEMS的尺寸减小时,暴露极高的比表面积并增强电子相关性,表面状态对体相同等是重要的。因此,表面/接口化学相互作用提供了调节低维CEMS的内在特性的替代途径。这里,使用表面改性,分子 - 固体相互作用和界面电子耦合,朝向导电固体,相变,包括麻省理工学院,CDW,超导和磁转变的相位过渡的调制来审查低维CEMS表面/界面化学工程的最近成果以及外部场响应。表面/接口化学工程提供了一种有希望的探索低维CEMS的新特性和功能应用的有希望的策略。最后,对于未来的研究开发,目前的挑战和表面的挑战和展望也指出。

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