首页> 外文会议>Meeting of the Electrochemical Society;International Meeting on Chemical Sensors >Effect of the Electron Transport Layer on the Photovoltaic Properties of Hybrid Organic Inorganic Perovskites Solar Cells: Cross-Section of Optics, Morphology, Composition and Quality
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Effect of the Electron Transport Layer on the Photovoltaic Properties of Hybrid Organic Inorganic Perovskites Solar Cells: Cross-Section of Optics, Morphology, Composition and Quality

机译:电子传输层对有机-无机钙钛矿杂化太阳能电池光伏性能的影响:光学截面、形貌、成分和质量

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Ever since their dawn in 2009, hybrid organic-inorganic perovskite materials have been experiencing an ever increase in research investment to finally emerge as a strong alternative for high power conversion efficiency (PCE) photovoltaic devices at low costs. One of the main challenges that is currently impeding the upscaling of these solar cells is the phenomenon of hysteresis on their j-V response that has been correlated with slow ion migration which, in turn, affects their photovoltaic properties. Although hysteresis has been described to some extent of detail, the precise role of the external contacts remains under debate. Furthermore, there has been a great deal of focus on materials and interface design while less attention has been given to optical aspects of these cells. Our work highlights the role of electron transport layer (ETL) of different compositions and synthesized through various routes on the hysteresis response of these systems. We show that there's a clear correlation between thickness, morphology and composition of the ETL on the photovoltaic response these systems. To better elucidate such a response, we have utilized photoluminescence, electroluminescence, absorption and kelvin probe force microscopy to get a substantial grasp of the optoelectronic phenomena occurring at the interfaces in perovskite solar cells.
机译:自2009年问世以来,有机-无机钙钛矿杂化材料的研究投入不断增加,最终成为低成本高功率转换效率(PCE)光伏器件的有力替代品。目前阻碍这些太阳能电池扩大规模的主要挑战之一是其j-V响应的滞后现象,这种现象与缓慢的离子迁移有关,而这反过来又会影响其光伏特性。虽然已经在一定程度上详细描述了滞后现象,但外部接触的确切作用仍存在争议。此外,人们对材料和界面设计有很大的关注,而对这些电池的光学方面关注较少。我们的工作强调了不同组成的电子传输层(ETL)以及通过不同途径合成的ETL对这些系统滞后响应的作用。我们表明,ETL的厚度、形态和组成对这些系统的光伏响应有明显的相关性。为了更好地阐明这种响应,我们利用光致发光、电致发光、吸收和开尔文探针力显微镜对钙钛矿型太阳能电池界面上发生的光电现象进行了实质性的了解。

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