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首页> 外文期刊>ACS applied materials & interfaces >A New Highly Conductive Direct Gap p-Type Semiconductor La1-xYxCuOS for Dual Applications: Transparent Electronics and Thermoelectricity
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A New Highly Conductive Direct Gap p-Type Semiconductor La1-xYxCuOS for Dual Applications: Transparent Electronics and Thermoelectricity

机译:用于双应用的新型高导电直接间隙P型半导体LA1-XYXCUO:透明电子和热电

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摘要

The absence of a high-performance p-type transparent semiconductor still remains as a roadblock to the development of future generation optoelectronics. Here, a highly conducting p-type transparent semiconductor based on Y incorporated LaCuOS oxychalcogenide is achieved for the first time, and the maximum Y substitution to obtain a single phase is found to be 25%. By enhancing both the hole mobility and concentration of the LaCuOS phase, Y-substituted oxychalcogenide single-phase La0.75Y0.25CuOS exhibits an outstanding p-type conductivity of 89.3 S.cm(-1) with high optical transparency, which is the highest among all transparent oxychalcogenides with a band gap above 3 eV reported so far. The structural, electronic, and optical as well as the thermoelectric properties of La1-xYxCuOS with a different Y substitution level are investigated, and the power factor was greatly enhanced to 4.322 mu W m(-1) K-2 after Y substitution. The highly performing diode based on a p-type La0.75Y0.25CuOS thin film and n-type Al-doped ZnO heterojunction with a high rectifying ratio of 300 is demonstrated, indicating its promising aspect for the next generation of invisible electronics and optoelectronics.
机译:没有高性能P型透明半导体仍然是未来一代光电子的发展的障碍。这里,首次实现基于Y掺入的LaCuOS氧化酰胺的高导电的p型透明半导体,并且发现获得单相的最大替代是25%。通过增强凝胶相的空穴迁移率和浓度,Y-取代的氧化氧化酯单相LA0.75Y0.25CUOS具有高光学透明度的89.3℃(-1)的优异P型导电性,这是最高的在迄今为止报道的3e eV以上的带隙中的所有透明氧化酶中。研究了具有不同Y取代水平的La1-Xyxcuos的结构,电子和光学,并且功率因数在Y取代后大大增强至4.322μm(-1)k-2。对基于P型La0.75Y0.25COO薄膜和具有高整流比为300的薄膜和N型Al掺杂ZnO异质结的高度执行二极管进行说明,表明其具有下一代无形电子和光电子的有希望的方面。

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