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Controlling band alignments by artificial interface dipoles at perovskite heterointerfaces

机译:通过钙钛矿异质界面上的人工界面偶极子控制能带排列

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摘要

The concept ‘the interface is the device' is embodied in a wide variety of interfacial electronic phenomena and associated applications in oxide materials, ranging from catalysts and clean energy systems to emerging multifunctional devices. Many device properties are defined by the band alignment, which is often influenced by interface dipoles. On the other hand, the ability to purposefully create and control interface dipoles is a relatively unexplored degree of freedom for perovskite oxides, which should be particularly effective for such ionic materials. Here we demonstrate tuning the band alignment in perovskite metal-semiconductor heterojunctions over a broad range of 1.7 eV. This is achieved by the insertion of positive or negative charges at the interface, and the resultant dipole formed by the induced screening charge. This approach can be broadly used in applications where decoupling the band alignment from the constituent work functions and electron affinities can enhance device functionality.
机译:“接口就是设备”的概念体现在各种各样的界面电子现象中以及在氧化物材料中的相关应用,从催化剂和清洁能源系统到新兴的多功能设备。频带对准定义了许多器件的特性,频带对准常常受界面偶极子的影响。另一方面,对于钙钛矿氧化物而言,有目的地产生和控制界面偶极子的能力是相对未探索的自由度,这对于这种离子材料应特别有效。在这里,我们演示了在1.7 eV的宽范围内调整钙钛矿金属-半导体异质结中的能带排列。这是通过在界面处插入正或负电荷,以及由感应的屏蔽电荷形成的偶极子来实现的。这种方法可以广泛地用于将波段对准与组成功函数和电子亲和力解耦的应用中,从而增强器件的功能。

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