Suppr超能文献

非富勒烯有机太阳能电池中的高效纳米尺度激子输运有助于减少自由电荷的双分子复合。

Efficient Nanoscale Exciton Transport in Non-Fullerene Organic Solar Cells Enables Reduced Bimolecular Recombination of Free Charges.

机构信息

Sustainable Advanced Materials (Sêr-SAM), Department of Physics, Swansea University, Singleton Park, Swansea, Wales, SA2 8PP, UK.

出版信息

Adv Mater. 2023 Jun;35(24):e2211174. doi: 10.1002/adma.202211174. Epub 2023 May 1.

Abstract

The highest-efficiency organic photovoltaic (OPV)-based solar cells, made from blends of electron-donating and electron-accepting organic semiconductors, are often characterized by strongly reduced (non-Langevin) bimolecular recombination. Although the origins of the reduced recombination are debated, mechanisms related to the charge-transfer (CT) state and free-carrier encounter dynamics controlled by the size of donor and acceptor domains are proposed as underlying factors. Here, a novel photoluminescence-based probe is reported to accurately quantify the donor-acceptor domain size in OPV blends. Specifically, the domain size is measured in high-efficiency non-fullerene acceptor (NFA) systems and a comparative conventional fullerene system. It is found that the NFA-based blends form larger domains but that the expected reductions in bimolecular recombination attributed to the enhanced domain sizes are too small to account for the observed reduction factors. Further, it is shown that the reduction of bimolecular recombination is correlated to enhanced exciton dynamics within the NFA domains. This indicates that the processes responsible for efficient exciton transport also enable strongly non-Langevin recombination in high-efficiency NFA-based solar cells with low-energy offsets.

摘要

最高效率的有机光伏(OPV)基太阳能电池通常由电子供体和电子受体有机半导体的混合物制成,其特点是双分子复合(非朗之万)大大减少。尽管减少复合的原因存在争议,但与电荷转移(CT)态和受施主和受主域大小控制的自由载流子遭遇动力学有关的机制被提出作为潜在因素。在这里,报道了一种新的基于光致发光的探针,可准确量化 OPV 混合物中施主-受体域的大小。具体而言,在高效非富勒烯受体(NFA)系统和比较传统富勒烯系统中测量了域大小。结果发现,基于 NFA 的混合物形成更大的域,但归因于增强的域大小而预期减少的双分子复合太小,无法解释观察到的减少因素。此外,还表明双分子复合的减少与 NFA 域内激子动力学的增强相关。这表明,负责有效激子输运的过程也能够在具有低能量偏移的高效 NFA 基太阳能电池中实现强烈的非朗之万复合。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验