离子晶体在金属-半导体结中的界面层作用

Basil Eldeeb, Hisham Nasser, Raşit Turan
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引用次数: 0

摘要

光电器件的性能是由异质结的带向特性决定的。界面层在电荷载流子选择性及其输运行为中起着重要的作用。通过对多种固态表面和异质结的实验和理论研究,我们发现电子的局域性(可以通过带隙能量和带宽度来量化)影响晶体的表面性质,从而影响界面的电子性质。结合其他观察结果,开发了一种接触设计策略,以增强电荷载流子跨边界和界面的传输,可以通过最大化其各自的传输机制来优化IL的堆栈结构,类似于通过掺杂对硅太阳能电池所做的事情。在这种情况下,在不改变异质结势垒高度的情况下,减小耗尽区宽度可以使载流子在界面上的输运最大化。
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Role of ionic crystals as interfacial layers in metal-semiconductor junction

Optoelectronic devices performance is governed by the band alignment nature in heterojunctions. Interfacial Layers (ILs) play an immense role in charge carrier-selectivity and their transport behavior. Considering the investigations on a wide array of solid-state surfaces and heterojunctions performed both experimentally and theoretically, we found that the electron localizability, which is quantifiable through the bandgap energy and band width, affects the surface properties of crystals and hence the electronic properties of the interfaces. In combination with other observations, a strategy for contact design is developed for enhancing charge carrier transport across the boundaries and the interfaces, one can optimize stack structures with IL by maximizing their respective transport mechanism, similar to what has been done with silicon solar cells by doping. In this case, charge carrier transport across the interface can be maximized by making the depletion region width smaller without altering the heterojunction barrier's height.

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