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用于提高无空穴传输层钙钛矿太阳能电池效率和稳定性的石墨/炭黑对电极沉积方法

Graphite/Carbon Black Counter Electrode Deposition Methods to Improve the Efficiency and Stability of Hole-Transport-Layer-Free Perovskite Solar Cells.

作者信息

Don Muna Fathiah, Ekanayake Piyasiri, Jennings James Robert, Nakajima Hideki, Lim Chee Ming

机构信息

Faculty of Science, Universiti Brunei Darussalam, Jalan Tungku Link, Gadong BE 1410, Brunei Darussalam.

Optoelectronic Device Research Group, Universiti Brunei Darussalam, Jalan Tungku Link, Gadong BE 1410, Brunei Darussalam.

出版信息

ACS Omega. 2022 Jun 21;7(26):22830-22838. doi: 10.1021/acsomega.2c02555. eCollection 2022 Jul 5.

Abstract

The interfacial compatibility between the graphite/carbon black composite counter electrode (Gr/CB CE) and the perovskite layer is a crucial determinant of the performance of the hole-transport-layer-free carbon-based perovskite solar cells, and judicious selection of the Gr/CB CE application method is essential for achieving an optimum contact. In this work, three different types of Gr/CB CEs application methods are investigated: (1) deposition of Gr/CB on the fluorine-doped tin oxide (FTO) substrate, followed by clamping to the perovskite layer, (2) direct deposition of Gr/CB onto the perovskite layer, and (3) deposition of Gr/CB onto the PbI precursor layer, followed by immersion in methylammonium iodide solution for the conversion of PbI to perovskite. The results revealed that Method 3 produced superior Gr/CB-perovskite contacts, resulting in up to 8.81% power conversion efficiency. The devices prepared using Method 3 also exhibited the best stability in the air, retaining 71.1% of their original efficiency after 1600 h of continuous testing. These results demonstrate that Gr/CB CEs can be considered excellent alternatives to the costly noble metals often employed in perovskite solar cells (PSCs) when deposited using a suitable technique.

摘要

石墨/炭黑复合对电极(Gr/CB CE)与钙钛矿层之间的界面相容性是无空穴传输层碳基钙钛矿太阳能电池性能的关键决定因素,明智地选择Gr/CB CE的应用方法对于实现最佳接触至关重要。在这项工作中,研究了三种不同类型的Gr/CB CE应用方法:(1)在氟掺杂氧化锡(FTO)衬底上沉积Gr/CB,然后夹在钙钛矿层上;(2)将Gr/CB直接沉积到钙钛矿层上;(3)在PbI前驱体层上沉积Gr/CB,然后浸入甲基碘化铵溶液中将PbI转化为钙钛矿。结果表明,方法3产生了优异的Gr/CB-钙钛矿接触,功率转换效率高达8.81%。使用方法3制备的器件在空气中也表现出最佳的稳定性,连续测试1600小时后仍保留其原始效率的71.1%。这些结果表明,当采用合适的技术沉积时,Gr/CB CE可被视为钙钛矿太阳能电池(PSC)中常用的昂贵贵金属的极佳替代品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a1e/9260948/36e7f06ced1e/ao2c02555_0002.jpg

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