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通过钴掺杂氧化镍空穴传输层提高倒置平面钙钛矿太阳能电池的光伏性能。

Enhancing Photovoltaic Performance of Inverted Planar Perovskite Solar Cells by Cobalt-Doped Nickel Oxide Hole Transport Layer.

机构信息

Wuhan National Laboratory for Optoelectronics , Huazhong University of Science and Technology , Wuhan 430074 , China.

School of Electronic Information , Huanggang Normal University , Huanggang 438000 , China.

出版信息

ACS Appl Mater Interfaces. 2018 Apr 25;10(16):14153-14159. doi: 10.1021/acsami.8b01683. Epub 2018 Apr 12.

Abstract

Electron and hole transport layers have critical impacts on the overall performance of perovskite solar cells (PSCs). Herein, for the first time, a solution-processed cobalt (Co)-doped NiO film was fabricated as the hole transport layer in inverted planar PSCs, and the solar cells exhibit 18.6% power conversion efficiency. It has been found that an appropriate Co-doping can significantly adjust the work function and enhance electrical conductivity of the NiO film. Capacitance-voltage ( C- V) spectra and time-resolved photoluminescence spectra indicate clearly that the charge accumulation becomes more pronounced in the Co-doped NiO -based photovoltaic devices; it, as a consequence, prevents the nonradiative recombination at the interface between the Co-doped NiO and the photoactive perovskite layers. Moreover, field-dependent photoluminescence measurements indicate that Co-doped NiO -based devices can also effectively inhibit the radiative recombination process in the perovskite layer and finally facilitate the generation of photocurrent. Our work indicates that Co-doped NiO film is an excellent candidate for high-performance inverted planar PSCs.

摘要

电子和空穴传输层对钙钛矿太阳能电池(PSCs)的整体性能有至关重要的影响。在此,首次在倒置平面 PSCs 中制备了一种通过溶液法处理的钴(Co)掺杂氧化镍(NiO)薄膜作为空穴传输层,该太阳能电池的光电转换效率达到 18.6%。研究发现,适量的 Co 掺杂可以显著调整 NiO 薄膜的功函数并提高其电导率。电容-电压(C-V)谱和时间分辨光致发光(PL)谱清楚地表明,Co 掺杂 NiO 基光伏器件中的电荷积累更为明显,从而阻止了 Co 掺杂 NiO 和光活性钙钛矿层之间界面处的非辐射复合。此外,场依赖性光致发光测量表明,Co 掺杂 NiO 基器件还可以有效地抑制钙钛矿层中的辐射复合过程,最终有利于光电流的产生。我们的工作表明,Co 掺杂 NiO 薄膜是高性能倒置平面 PSCs 的理想选择。

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