首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Low work function of crystalline GeTe/Sb2Te3 superlattice-like films induced by Te dangling bonds
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Low work function of crystalline GeTe/Sb2Te3 superlattice-like films induced by Te dangling bonds

机译:Cryalline Gete / Sb2te3超晶格膜的低功函数,由TE悬空键引起的薄膜

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摘要

We utilized a GeTe/Sb2Te3 superlattice-like structure (SLL) to obtain a lower crystalline work function (WF) than that for GeTe. Electrostatic force microscopy measurements demonstrated the difference in crystalline WF. Due to the lower crystalline WF, the heterojunction diodes based on the SLL obtained a better crystalline electrical performance. We preformed numerical simulation to confirm that the higher number of Te dangling bonds caused by the multilayer interface and grain boundaries in the SLL is the main reason for the decrease in WF. X-ray photoelectron spectroscopy analysis indicated that more Te-O bonds formed in SLL than GeTe after atmospheric annealing. While it is easy for the Te dangling bonds to combine dipoles, more Te dangling bonds exist in SLLs.
机译:我们利用GetE / SB2Te3超晶格状结构(SLL)来获得比GetE的较低晶体功函数(WF)。 静电力显微镜测量显示了结晶WF的差异。 由于晶体WF较低,基于SLL的异质结二极管获得了更好的结晶电性能。 我们预先形成了数值模拟,以确认由SLL中多层界面和晶界引起的TE悬空粘合数量较多的TE悬空键是WF减少的主要原因。 X射线光电子能谱分析表明,大气退火后,在SLL中形成的更多TE-O键。 虽然TE悬挂键可以组合偶极子很容易,但SLL中存在更多TE悬空债券。

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