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Interfacial Reactivity of Au, Pd, and Pt on BiI3 (001): Implications for Electrode Selection

机译:Au,Pd和Pt在BiI3(001)上的界面反应性:电极选择的意义

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Understanding the contact-semiconductor interface is important in determining the performance of a semiconductor device. This study investigated the contact chemistry of BiI3 single crystal with Au, Pd, and Pt electrodes using X-ray photoelectron spectroscopy (XPS), a technique widely used to probe the interfacial chemistry of many materials. Chemical reactions were identified on the BiI3 surface for the case of Pd and Pt contacts, while Au showed no reactivity with BiI3. The difference in reactivities correlated with different surface morphologies of the contact on the BiI3 surface, which was evidenced by atomic force microscopy (AFM) characterization. The dark resistivity of the BiI3 crystal with above contact materials was measured by I—V characterization. The highest resistivity was obtained when Au was employed as the contact. These results suggest that Au is better than Pd and Pt as the contact material for BiI3 single crystal.
机译:了解接触-半导体界面对确定半导体器件的性能很重要。这项研究使用X射线光电子能谱(XPS)研究了BiI3单晶与Au,Pd和Pt电极的接触化学,该技术广泛用于探测多种材料的界面化学。对于Pd和Pt接触,在BiI3表面上发现了化学反应,而Au与BiI3没有反应。反应性的差异与BiI3表面接触的不同表面形态有关,这已通过原子力显微镜(AFM)表征得到了证明。具有上述接触材料的BiI3晶体的暗电阻率通过IV表征来测量。当使用Au作为触点时,可获得最高的电阻率。这些结果表明,作为BiI3单晶的接触材料,Au优于Pd和Pt。

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