Instability analysis of perovskite solar cells via short-circuit impedance spectroscopy: A case study on NiOx passivation

IF 2.7 3区 物理与天体物理 Q2 PHYSICS, APPLIED Journal of Applied Physics Pub Date : 2024-09-04 DOI:10.1063/5.0216983
Osbel Almora, Pilar López-Varo, Renán Escalante, John Mohanraj, Lluis F. Marsal, Selina Olthof, Juan A. Anta
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Abstract

Perovskite solar cells (PSCs) continue to be the “front runner” technology among emerging photovoltaic devices in terms of power conversion efficiency and versatility of applications. However, improving stability and understanding their relationship with their ionic–electronic transport mechanisms continue to be challenging. In this work, a case study of NiOx-based inverted PSCs and the effect of different interface passivating treatments on device performance is presented. Impedance spectroscopy (IS) measurements in short-circuit conditions were performed under different illumination intensities, as well as bias-stress operational stability tests under constant illumination intensity. Surface treatments that involved bulky Lewis bases resulted in better and more stable performance. In contrast, acidic anion donors could induce both an initial performance decrease with a characteristic three-arcs impedance Nyquist plot and a subsequent instability during light exposure. Drift–diffusion simulations suggest strong modifications of surface recombination at the interface with the hole transport material, and for the ion concentration and mobilities in the perovskite. Importantly, capacitance and resistance are shown to peak maximum and minimum values, respectively, around mobile ion concentration (Nion) of 1016 and 1017 cm−3. These features relate to the transition from a drift-, for low Nion below a threshold value, to a diffusion-dominated transport in the bulk of the perovskite, for high Nion beyond the threshold value. Our results introduce a general route for characterization of instability paths in PSCs via IS performed under short-circuit conditions.
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通过短路阻抗光谱分析过氧化物太阳能电池的不稳定性:氧化镍钝化案例研究
就功率转换效率和应用多样性而言,过氧化物太阳能电池(PSCs)仍然是新兴光伏设备中的 "领跑者 "技术。然而,提高其稳定性并了解其与离子电子传输机制之间的关系仍然是一项挑战。在这项研究中,介绍了基于氧化镍的倒置 PSCs 案例研究以及不同界面钝化处理对器件性能的影响。研究人员在不同光照强度下进行了短路条件下的阻抗光谱(IS)测量,并在恒定光照强度下进行了偏压操作稳定性测试。使用笨重的路易斯碱进行表面处理可获得更好、更稳定的性能。与此相反,酸性阴离子供体会导致最初的性能下降,出现特征性的三弧阻抗奈奎斯特图,随后在光照射期间出现不稳定性。漂移扩散模拟表明,在与空穴传输材料的界面处,以及在过氧化物中,表面重组以及离子浓度和迁移率都会发生强烈变化。重要的是,电容和电阻分别在移动离子浓度(Nion)为 1016 和 1017 cm-3 时达到最大值和最小值。这些特征表明,在低于阈值的低离子浓度条件下,包晶体中的漂移传输过渡到了超过阈值的高离子浓度条件下的扩散传输。我们的研究结果为通过在短路条件下进行的 IS 来描述 PSC 中的不稳定路径提供了一种通用方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Applied Physics
Journal of Applied Physics 物理-物理:应用
CiteScore
5.40
自引率
9.40%
发文量
1534
审稿时长
2.3 months
期刊介绍: The Journal of Applied Physics (JAP) is an influential international journal publishing significant new experimental and theoretical results of applied physics research. Topics covered in JAP are diverse and reflect the most current applied physics research, including: Dielectrics, ferroelectrics, and multiferroics- Electrical discharges, plasmas, and plasma-surface interactions- Emerging, interdisciplinary, and other fields of applied physics- Magnetism, spintronics, and superconductivity- Organic-Inorganic systems, including organic electronics- Photonics, plasmonics, photovoltaics, lasers, optical materials, and phenomena- Physics of devices and sensors- Physics of materials, including electrical, thermal, mechanical and other properties- Physics of matter under extreme conditions- Physics of nanoscale and low-dimensional systems, including atomic and quantum phenomena- Physics of semiconductors- Soft matter, fluids, and biophysics- Thin films, interfaces, and surfaces
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