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Stabilization of wide band-gap p-type wurtzite MnTe thin films on amorphous substrates

机译:在非晶基板上稳定宽带间隙P型张开晶型MNTe薄膜

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An important challenge in the development of optoelectronic devices for energy conversion applications is the search for suitable p-type contact materials. For example, p-type MnTe would be a promising alternative back contact for CdTe solar cells due to their chemical compatibility, but under normal conditions it has a too narrow band gap due to its octahedrally coordinated nickeline (NC) structure. The tetrahedrally coordinated wurtzite (WZ) polymorph of MnTe has not been reported, but it is especially interesting due to its predicted wider band gap and better structural compatibility with CdTe and related II-VI semiconductor materials. Here, we report on the stabilization of WZ-MnTe thin films on amorphous indium zinc oxide (a-IZO) substrates relevant to photovoltaic applications. Optical spectroscopy of the WZ-MnTe films shows a wide direct band gap of E-g = 2.7 eV, while photoelectron spectroscopy (PES) measurements reveal weak p-type doping with a Fermi level of 0.6 eV above the valence band maximum. The results of electron microscopy and PES measurements indicate that WZ-MnTe is stabilized due to interdiffusion at the interface with IZO. The results of this work introduce a substrate stabilized WZ-MnTe polymorph as a potential p-type contact material candidate for future applications in CdTe devices for solar energy conversion and other optoelectronic technologies.
机译:用于能量转换应用的光电器件开发的重要挑战是搜索合适的p型接触材料。例如,P型MNTE是由于其化学相容性的CDTE太阳能电池的有希望的替代接触,但在正常条件下,由于其八面体协调的镍(NC)结构,它具有过于窄的带隙。尚未报告MNTE的四面体协调的紫吨素(WZ)多晶型物,但由于其预测的更广泛的带隙和与CDTE和相关II-VI-VI半导体材料更好的结构相容性,因此特别有趣。这里,我们报告了与光伏应用相关的无定形铟锌(A-IZO)基材上的WZ-MNTE薄膜的稳定。 WZ-MNTE膜的光学光谱显示出E-G = 2.7eV的宽直接带隙,而光电子谱(PE)测量揭示了在价带最大值之上的FERMI水平的FERMI水平的弱P型掺杂。电子显微镜和PES测量结果表明WZ-MNTE由于与IZO界面处的相互作用而稳定。该工作的结果将基板稳定的WZ-MNTE多晶型图片引入潜在的p型接触材料候选者,用于太阳能转换和其他光电技术的CDTE装置中的未来应用。

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