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17% Efficient Organic Solar Cells Based on Liquid Exfoliated WS <sub/>2</sub> as a Replacement for PEDOT:PSS

DOI:10.1002/adma.201902965 期刊:Advanced Materials 出版年份:2019 更新时间:2025-09-19 17:13:59
摘要: The application of liquid-exfoliated 2D transition metal disulfides (TMDs) as the hole transport layers (HTLs) in nonfullerene-based organic solar cells is reported. It is shown that solution processing of few-layer WS2 or MoS2 suspensions directly onto transparent indium tin oxide (ITO) electrodes changes their work function without the need for any further treatment. HTLs comprising WS2 are found to exhibit higher uniformity on ITO than those of MoS2 and consistently yield solar cells with superior power conversion efficiency (PCE), improved fill factor (FF), enhanced short-circuit current (JSC), and lower series resistance than devices based on poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) and MoS2. Cells based on the ternary bulk-heterojunction PBDB-T-2F:Y6:PC71BM with WS2 as the HTL exhibit the highest PCE of 17%, with an FF of 78%, open-circuit voltage of 0.84 V, and a JSC of 26 mA cm?2. Analysis of the cells’ optical and carrier recombination characteristics indicates that the enhanced performance is most likely attributed to a combination of favorable photonic structure and reduced bimolecular recombination losses in WS2-based cells. The achieved PCE is the highest reported to date for organic solar cells comprised of 2D charge transport interlayers and highlights the potential of TMDs as inexpensive HTLs for high-efficiency organic photovoltaics.
作者: Yuanbao Lin,Begimai Adilbekova,Yuliar Firdaus,Emre Yengel,Hendrik Faber,Muhammad Sajjad,Xiaopeng Zheng,Emre Yarali,Akmaral Seitkhan,Osman M. Bakr,Abdulrahman El-Labban,Udo Schwingenschl?gl,Vincent Tung,Iain McCulloch,Frédéric Laquai,Thomas D. Anthopoulos
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Investigating the use of liquid-exfoliated 2D transition metal disulfides (TMDs) as hole transport layers (HTLs) in nonfullerene-based organic solar cells to improve power conversion efficiency (PCE).

The study demonstrates that liquid-exfoliated WS2 nanosheets can serve as effective HTLs in organic solar cells, leading to superior PCEs compared to traditional materials like PEDOT:PSS. The highest PCE of 17% was achieved with a ternary BHJ system, showcasing the potential of TMDs in high-efficiency organic photovoltaics.

The study highlights the need for further optimization of the morphology and uniformity of solution-processed MX2 carrier transporting layers. The reliance on specific BHJ systems and the need for scalable production methods are also noted as areas for future research.

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