基于非融合结构S, n-杂杂烯非富勒烯受体的三元有机太阳能电池a - d - d - a型

IF 3.6 4区 工程技术 Q3 ENERGY & FUELS
Muchamed Keshtov, Alexei Khokhlov, Dmitri Shikin, Jun Liu, Dmitri Kalinkin, Vladimir Alekseev, Rahul Singhal, Ganesh D. Sharma
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引用次数: 0

摘要

本研究通过A-D-D-A的排列方式合成了两种不同的未融合非富勒烯受体(nfa),它们都含有相同的D-D中心S, n-杂苯,但末端受体不同,即BTA (NFA-2)和IC (NFA-3)。研究了它们的光学和电化学性质。NFA-2和NFA-3均显示出较高的最低未占据分子轨道能级,导致有机太阳能电池开路电压升高。选择PBDB-T作为聚合物供体,显示出两种nfa互补的光谱吸收。优化后的PBDB-T:NFA-2和PBDB-T:NFA-3有机太阳能电池的功率转换效率分别为9.24%和13.50%。由于NFA-2和NFA-3的吸收特性互补,在PBDB-T:NFA-3二元共混物中加入少量的NFA-2,得到的三元有机太阳能电池的功率转换效率可达15.24%。功率转换效率的提高与短路电流和填充因子的较高值有关。三元有机太阳能电池中增加的短路电流值与NFA-2中产生的激子通过将能量从NFA-2转移到NFA-3而有效地利用激子解离、更快的电荷提取、减少的双分子和陷阱辅助重组有关。FF的价值提升也与前面提到的过程有关。该研究表明,在三元有机太阳能电池中,使用具有互补吸收光谱的独立非熔融NFA是有利的,并且在中等带隙受体的PL光谱与窄带隙NFA的吸收光谱重叠。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Ternary Organic Solar Cells Based on S, N-Heteroacene Non-Fullerene Acceptors with Unfused Architecture A-D-D-A-Type

Ternary Organic Solar Cells Based on S, N-Heteroacene Non-Fullerene Acceptors with Unfused Architecture A-D-D-A-Type

In this study, two distinct unfused non-fullerene acceptors (NFAs) are synthesized by arranging them in an A-D-D-A pattern, both containing same D-D central S, N-heteroacene but different terminal acceptors, namely BTA (NFA-2) and IC (NFA-3). Their optical and electrochemical properties are investigated. Both NFA-2 and NFA-3 display the high lowest unoccupied molecular orbital energy level, leading to an increased open circuit voltage in the organic solar cells. PBDB-T is chosen as polymer donor, showing spectral absorption that complements both NFAs. The optimized organic solar cells, based on PBDB-T:NFA-2 and PBDB-T:NFA-3 attained power conversion efficiency of 9.24% and 13.50%, respectively. Since the absorption characteristics of NFA-2 and NFA-3 are complementary, a small amount of NFA-2 is added into PBDB-T:NFA-3 binary blend, the ternary organic solar cells attained a power conversion efficiency of 15.24%. The rise in power conversion efficiency is linked to the higher values of both short circuit current and fill factor. The increased short circuit current value in ternary organic solar cells is linked to the efficient use of excitons produced in NFA-2 by transferring energy from NFA-2 to NFA-3 and effective exciton dissociation, faster charge extraction, decreased bimolecular and trap-assisted recombination. The enhanced value of FF is also linked to the processes mentioned earlier. This investigation shows that it is advantageous to use separate non-fused NFAs with absorption spectra that complement each other and have overlapped PL spectra of a medium bandgap acceptor along with the absorption spectra of a narrow bandgap NFA in ternary organic solar cells.

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来源期刊
Energy technology
Energy technology ENERGY & FUELS-
CiteScore
7.00
自引率
5.30%
发文量
0
审稿时长
1.3 months
期刊介绍: Energy Technology provides a forum for researchers and engineers from all relevant disciplines concerned with the generation, conversion, storage, and distribution of energy. This new journal shall publish articles covering all technical aspects of energy process engineering from different perspectives, e.g., new concepts of energy generation and conversion; design, operation, control, and optimization of processes for energy generation (e.g., carbon capture) and conversion of energy carriers; improvement of existing processes; combination of single components to systems for energy generation; design of systems for energy storage; production processes of fuels, e.g., hydrogen, electricity, petroleum, biobased fuels; concepts and design of devices for energy distribution.
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