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基于双供体聚合物共混物的高效、稳定且可延展的三元非富勒烯有机太阳能电池。

Highly Efficient, Stable, and Ductile Ternary Nonfullerene Organic Solar Cells from a Two-Donor Polymer Blend.

作者信息

Hu Huawei, Ye Long, Ghasemi Masoud, Balar Nrup, Rech Jeromy James, Stuard Samuel J, You Wei, O'Connor Brendan T, Ade Harald

机构信息

Department of Physics and ORganic and Carbon Electronics Labs (ORaCEL), North Carolina State University, Raleigh, NC, 27695, USA.

Department of Mechanical and Aerospace Engineering and ORaCEL, North Carolina State University, Raleigh, NC, 27695, USA.

出版信息

Adv Mater. 2019 Apr;31(17):e1808279. doi: 10.1002/adma.201808279. Epub 2019 Mar 18.

Abstract

Organic solar cells (OSCs) are one of the most promising cost-effective options for utilizing solar energy, and, while the field of OSCs has progressed rapidly in device performance in the past few years, the stability of nonfullerene OSCs has received less attention. Developing devices with both high performance and long-term stability remains challenging, particularly if the material choice is restricted by roll-to-roll and benign solvent processing requirements and desirable mechanical durability. Building upon the ink (toluene:FTAZ:IT-M) that broke the 10% benchmark when blade-coated in air, a second donor material (PBDB-T) is introduced to stabilize and enhance performance with power conversion efficiency over 13% while keeping toluene as the solvent. More importantly, the ternary OSCs exhibit excellent thermal stability and storage stability while retaining high ductility. The excellent performance and stability are mainly attributed to the inhibition of the crystallization of nonfullerene small-molecular acceptors (SMAs) by introducing a stiff donor that also shows low miscibility with the nonfullerene SMA and a slightly higher highest occupied molecular orbital (HOMO) than the host polymer. The study indicates that improved stability and performance can be achieved in a synergistic way without significant embrittlement, which will accelerate the future development and application of nonfullerene OSCs.

摘要

有机太阳能电池(OSCs)是利用太阳能最具前景的性价比高的选择之一。虽然在过去几年中,OSCs领域在器件性能方面取得了快速进展,但非富勒烯OSCs的稳定性受到的关注较少。开发兼具高性能和长期稳定性的器件仍然具有挑战性,特别是当材料选择受到卷对卷和良性溶剂加工要求以及理想的机械耐久性限制时。基于在空气中刮涂时突破10%基准的墨水(甲苯:FTAZ:IT-M),引入了第二种供体材料(PBDB-T),以在保持甲苯作为溶剂的同时稳定并提高性能,功率转换效率超过13%。更重要的是,三元OSCs表现出优异的热稳定性和储存稳定性,同时保持高延展性。优异的性能和稳定性主要归因于通过引入一种刚性供体抑制非富勒烯小分子受体(SMAs)的结晶,该供体与非富勒烯SMA的混溶性也较低,且最高占据分子轨道(HOMO)略高于主体聚合物。该研究表明,可以以协同方式实现稳定性和性能的提高,而不会出现明显脆化,这将加速非富勒烯OSCs的未来发展和应用。

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