Industrial Kraft Lignin Based Binary Cathode Interface Layer Enables Enhanced Stability in High Efficiency Organic Solar Cells

被引:8
作者
Zhang, Qilun [1 ,2 ]
Liu, Tiefeng [1 ]
Wilken, Sebastian [3 ]
Xiong, Shaobing [4 ]
Zhang, Huotian [5 ]
Ribca, Iuliana [6 ]
Liao, Mingna [1 ,2 ]
Liu, Xianjie [1 ]
Kroon, Renee [1 ,2 ]
Fabiano, Simone [1 ,2 ]
Gao, Feng [5 ]
Lawoko, Martin [6 ]
Bao, Qinye [4 ]
Oesterbacka, Ronald [3 ]
Johansson, Mats [6 ]
Fahlman, Mats [1 ,2 ]
机构
[1] Linkoping Univ, Dept Sci & Technol ITN, Lab Organ Elect, SE-60174 Norrkoping, Sweden
[2] Linkoping Univ, Wallenberg Wood Sci Ctr, Dept Sci & Technol ITN, SE-60174 Norrkoping, Sweden
[3] Abo Akad Univ, Fac Sci & Engn, Turku 20500, Finland
[4] East China Normal Univ, Sch Phys & Elect Sci, Shanghai 200241, Peoples R China
[5] Linkoping Univ, Dept Phys Chem & Biol IFM, SE-58183 Linkoping, Sweden
[6] KTH Royal Inst Technol, Dept Fiber & Polymer Technol, Sch Engn Sci Chem Biotechnol & Hlth, SE-10044 Stockholm, Sweden
基金
瑞典研究理事会;
关键词
bathocuproine; binary cathode interface layer; lignin; organic solar cell; stability; DEFECT PASSIVATION; PERFORMANCE; RECOMBINATION; INTERLAYER;
D O I
10.1002/adma.202307646
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Herein, a binary cathode interface layer (CIL) strategy based on the industrial solvent fractionated LignoBoost kraft lignin (KL) is adopted for fabrication of organic solar cells (OSCs). The uniformly distributed phenol moieties in KL enable it to easily form hydrogen bonds with commonly used CIL materials, i.e., bathocuproine (BCP) and PFN-Br, resulting in binary CILs with tunable work function (WF). This work shows that the binary CILs work well in OSCs with large KL ratio compatibility, exhibiting equivalent or even higher efficiency to the traditional CILs in state of art OSCs. In addition, the combination of KL and BCP significantly enhanced OSC stability, owing to KL blocking the reaction between BCP and nonfullerene acceptors (NFAs). This work provides a simple and effective way to achieve high-efficient OSCs with better stability and sustainability by using wood-based materials. This work introduces industrial solvent fractionated LignoBoost kraft lignin (KL) in highly efficient organic solar cells (OSCs) by binary cathode interface layer (CIL) strategy, which can significantly improve the stability of both binary and ternary photoactive layer (PAL) OSC, owing to the passivation of diffusion and reaction between bathocuproine (BCP) and nonfullerene acceptors (NFAs). The results combine sustainable wood-based material with classic interface materials in advance NFA-OSCs.image
引用
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页数:12
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