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Oxide p-n Heterojunction of Cu2O/ZnO Nanowires and Their Photovoltaic Performance

机译:Cu2O / ZnO纳米线的氧化物P-N异质结及其光伏性能

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摘要

Oxide p-n heterojunction devices consisting of p-Cu2O/n-ZnO nanowires were fabricated on ITO/glass substrates and their photovoltaic performances were investigated. The vertically arrayed ZnO nanowires were grown by metal organic chemical vapor deposition, which was followed by the electrodeposition of the p-type Cu2O layer. Prior to the fabrication of solar cells, the effect of bath pH on properties of the absorber layers was studied to determine the optimal condition of the Cu2O electrodeposition process. With the constant pH 11 solution, the Cu2O layer preferred the (111) orientation, which gave low electrical resistivity and high optical absorption. The Cu2O (pH 11)/ZnO nanowire-based solar cell exhibited a higher conversion efficiency of 0.27% than the planar structure solar cell (0.13%), because of the effective charge collection in the long wavelength region and because of the enhanced junction area.
机译:由P-Cu 2 O / N-ZnO纳米线组成的氧化物P-N异质结装置在ITO /玻璃基板上制造,并研究了它们的光伏性能。通过金属有机化学气相沉积生长垂直阵列的ZnO纳米线,其次是P型Cu2O层的电沉积。在制造太阳能电池之前,研究了浴pH对吸收层的性质的影响,以确定Cu2O电沉积工艺的最佳状态。利用恒定的pH11溶液,Cu2O层优选(111)取向,其产生低电阻率和高光学吸收。基于Cu2O(pH11)/ ZnO纳米线的太阳能电池表现出比平面结构太阳能电池(0.13%)的更高转化效率0.27%,因为长波长区域中的有效电荷收集以及由于增强的接线区域。

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