Air-Processable and Thermally Stable Hole Transport Layer for Non-Fullerene Organic Solar Cells

被引:16
作者
Bertrandie, Jules [1 ]
Sharma, Anirudh [1 ]
Gasparini, Nicola [1 ]
Villalva, Diego Rosas [1 ]
Paleti, Sri Harish K. [1 ]
Wehbe, Nimer [2 ]
Troughton, Joel [1 ]
Baran, Derya [1 ]
机构
[1] King Abdullah Univ Sci & Technol KAUST, Phys Sci & Engn PSE, KAUST Solar Ctr KSC, Thuwal 239556900, Saudi Arabia
[2] King Abdullah Univ Sci & Technol KAUST, Core Labs, Thuwal 23955, Saudi Arabia
关键词
interlayer; organic solar cell; stability; HTL; PEDOT:PSS; OPEN-CIRCUIT VOLTAGE; PHOTOELECTRON-SPECTROSCOPY; CATHODE INTERLAYER; ENERGY-CONVERSION; PEDOT-PSS; POLYMER; STABILITY; INTERFACE; ZNO; TEMPERATURE;
D O I
10.1021/acsaem.1c03378
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Power conversion efficiencies (PCEs) of organic solar cells (OSCs) have now surpassed 19%. This has led to an increased focus on developing devices using methods and materials that are scalable, processable under ambient air atmospheres, and stable. However, current materials fall short of the essential requirements for stability and processability needed for cost-effective large-scale fabrication of high-performing OSCs. Here, we report a hybrid solution-processable hole transport layer (HTL) based on tantalum-doped tungsten oxide (TaWOx) nanoparticles and poly(3,4-ethylenedioxythiophene):poly(styrene sulfonate) demonstrating good wettability over the hydrophobic active layer. N-i-p-type OSCs that are processed fully under ambient conditions, based on a polymer donor and a non-fullerene acceptor incorporating a combined TaWOx-PEDOT:PSS layer as HTL deliver a power conversion efficiency of 8.6%. OSCs utilizing the TaWOx-PEDOT:PSS HTL demonstrate improved thermal stability compared to devices based on the previously reported solution-processed MoOx-PEDOT:PSS HTL, which was found to severely degrade upon thermal treatment at 85 degrees C. Photoelectron spectroscopy and secondary ion mass spectrometry (SIMS) reveal that the MoOx-PEDOT:PSS HTL is prone to thermally induced intermixing with the underlying active layer, resulting in unfavorable changes in the interfacial energetics. No significant heat-induced changes are observed in the case of the TaWOx-PEDOT:PSS HTL when annealed up to 120 degrees C, imparting enhanced thermal stability to the devices. Improved wettability on hydrophobic surfaces, combined with air processability and enhanced thermal stability makes TaWOx-PEDOT:PSS a promising HTL material for fabricating stable NFA solar cells using rollto-roll compatible printing and coating methods.
引用
收藏
页码:1023 / 1030
页数:8
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