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首页> 外文期刊>Journal of Applied Physics >Band alignment of epitaxial ZnS/Zn3P2 heterojunctions
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Band alignment of epitaxial ZnS/Zn3P2 heterojunctions

机译:外延ZnS / Zn3P2异质结的能带对准

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摘要

The energy-band alignment of epitaxial zb-ZnS(001)/α-Zn3P2(001) heterojunctions has been determined by measurement of shifts in the phosphorus 2p and sulfur 2p core-level binding energies for various thicknesses (0.6–2.2 nm) of ZnS grown by molecular beam epitaxy on Zn3P2. In addition, the position of the valence-band maximum for bulk ZnS and Zn3P2 films was estimated using density functional theory calculations of the valence-band density-of-states. The heterojunction was observed to be type I, with a valence-band offset, ΔEV, of -1.19 ± 0.07 eV, which is significantly different from the type II alignment based on electron affinities that is predicted by Anderson theory. n+-ZnS/p-Zn3P2 heterojunctions demonstrated open-circuit voltages of >750 mV, indicating passivation of the Zn3P2 surface due to the introduction of the ZnS overlayer. Carrier transport across the heterojunction devices was inhibited by the large conduction-band offset, which resulted in short-circuit current densities of <0.1 mA cm-2 under 1 Sun simulated illumination. Hence, constraints on the current density will likely limit the direct application of the ZnS/Zn3P2 heterojunction to photovoltaics, whereas metal-insulator-semiconductor structures that utilize an intrinsic ZnS insulating layer appear promising.
机译:外延zb-ZnS(001)/α-Zn3P2(001)异质结的能带排列已通过测量磷的2p和硫2p核心层结合能在不同厚度(0.6–2.2 nm)下的位移来确定。通过分子束外延在Zn3P2上生长的ZnS。另外,使用价带状态密度的密度泛函理论计算来估计块状ZnS和Zn3P2薄膜的价带最大值的位置。观察到异质结为I型,价带偏移ΔEV为-1.19±0.07 eV,这与基于安德森理论预测的基于电子亲和力的II型排列显着不同。 n + -ZnS / p-Zn3P2异质结显示开路电压> 750 mV,表明由于引入ZnS覆盖层而使Zn3P2表面钝化。较大的导带偏移抑制了跨异质结器件的载流子传输,导致在1 Sun模拟照明下的短路电流密度为<0.1 mA cm -2 。因此,对电流密度的限制可能会限制ZnS / Zn3P2异质结在光伏技术中的直接应用,而利用本征ZnS绝缘层的金属-绝缘体-半导体结构似乎很有希望。

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