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Hydrophobic Cu2O Quantum Dots Enabled by Surfactant Modification as Top Hole‐Transport Materials for Efficient Perovskite Solar Cells

机译:表面活性剂改性使疏水性Cu2O量子点成为高效钙钛矿太阳能电池的空穴传输材料。

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摘要

The utilization of an inorganic hole‐transport layer (HTL) is one of the most effective methods to improve the stability and reduce the cost of perovskite solar cells (PSCs). However, achieving high‐quality inorganic HTL films, especially HTL films in n‐i‐p structures, via solution processes remains a big challenge. Here, a simple surface modification strategy for low‐cost and stable cuprous oxide (Cu2O) quantum dots is proposed, which utilizes a silane coupling agent. The modified Cu2O can be directly deposited on the perovskite film as the top HTL without decomposing the perovskite to maintain an n‐i‐p structure. The efficiency (18.9%) of PSCs with surface‐modified Cu2O as the HTL is significantly higher than that (11.9%) of PSCs with unmodified Cu2O, which is also the record efficiency for a Cu2O‐based perovskite solar cell in n‐i‐p structure. The enhanced performance of PSCs is attributed to the remarkably enhanced film properties achieved through surface modification. Moreover, because of the dopant‐free technology and hydrophobic surface, the Cu2O‐based PSCs have distinctly better stability than 2,2′,7,7′‐tetrakis[N,N‐di(4‐methoxyphenyl)amino]‐9,9′‐spiro‐bifluorene‐based PSCs.
机译:利用无机空穴传输层(HTL)是提高稳定性和降低钙钛矿太阳能电池(PSC)成本的最有效方法之一。然而,通过溶液工艺获得高质量的无机HTL膜,尤其是n-i-p结构的HTL膜,仍然是一个巨大的挑战。在此,提出了一种使用硅烷偶联剂的低成本,稳定的氧化亚铜(Cu2O)量子点的简单表面改性策略。改性后的Cu2O可以直接沉积在钙钛矿薄膜上作为HTL的顶层,而无需分解钙钛矿以保持n-i-p结构。以HTL表面改性的Cu2O的PSC的效率(18.9%)明显高于未改性的Cu2O的PSC的效率(11.9%),这也是n-i-中基于Cu2O的钙钛矿太阳能电池的创纪录效率。 p结构。 PSC的性能增强归因于通过表面改性获得的显着增强的薄膜性能。此外,由于采用无掺杂技术和疏水性表面,基于Cu2O的PSC的稳定性明显优于2,2',7,7'-四[N,N-二(4-甲氧基苯基)氨基] -9,基于9'-螺二芴的PSC。

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