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新型硼掺杂p型氧化铜薄膜作为晶体硅太阳能电池中的空穴选择性接触材料

Novel Boron-Doped p-Type CuO Thin Films as a Hole-Selective Contact in c-Si Solar Cells.

作者信息

K Markose Kurias, Shaji Manu, Bhatia Swasti, Nair Pradeep R, Saji Kachirayil J, Antony Aldrin, Jayaraj Madambi K

机构信息

Department of Physics, Cochin University of Science and Technology, Kochi 682022, India.

Department of Electrical Engineering, Indian Institute of Technology, Bombay, Powai, Mumbai 400076, India.

出版信息

ACS Appl Mater Interfaces. 2020 Mar 18;12(11):12972-12981. doi: 10.1021/acsami.9b22581. Epub 2020 Mar 5.

Abstract

p-type CuO thin films doped with trivalent cation boron are demonstrated for the first time as an efficient hole-selective layer for c-Si heterojunction solar cells. CuO and CuO:B films were deposited by rf magnetron sputtering, and the optical and electrical properties of the doped and undoped films were investigated. Boron doping enhanced the carrier concentration and the electrical conductivity of the CuO film. The band alignment of the CuO:B/Si heterojunction was investigated using XPS and UPS measurements. The CuO:B/Si interface has a valance band offset of 0.08 eV, which facilitates hole transport, and a conduction band offset of 1.35 eV, which blocks the electrons. A thin SiO tunnel oxide interlayer was also explored as the passivation layer. The initial trials of incorporating this CuO:B layer as a hole transporting layer in a single heterojunction solar cell with the structure, ITO/CuO:B/n-Si/Ag, and a cell area of 1 cm yielded an open-circuit voltage of 370 mV, a short-circuit current density of 36.5 mA/cm, and an efficiency of 5.4%. This p-type material could find potential applications in various optoelectronic applications like organic solar cells, TFTs, and LEDs.

摘要

首次展示了掺杂三价阳离子硼的p型CuO薄膜作为c-Si异质结太阳能电池的高效空穴选择性层。通过射频磁控溅射沉积CuO和CuO:B薄膜,并研究了掺杂和未掺杂薄膜的光学和电学性质。硼掺杂提高了CuO薄膜的载流子浓度和电导率。使用XPS和UPS测量研究了CuO:B/Si异质结的能带排列。CuO:B/Si界面的价带偏移为0.08 eV,有利于空穴传输,导带偏移为1.35 eV,可阻挡电子。还探索了薄SiO隧道氧化层作为钝化层。将该CuO:B层作为空穴传输层引入结构为ITO/CuO:B/n-Si/Ag、电池面积为1 cm²的单异质结太阳能电池的初步试验,得到开路电压为370 mV、短路电流密度为36.5 mA/cm²、效率为5.4%。这种p型材料可在有机太阳能电池、TFT和LED等各种光电子应用中找到潜在应用。

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