Highly efficient polymer solar cells with PTB7-based narrow band-gap conjugated polyelectrolytes as cathode interlayers: Device performance dependence on the ionic pendants

被引:10
|
作者
Zhang, Wenjun [1 ]
Song, Changjian [1 ]
Li, Yaru [1 ]
Liu, Xiaohui [1 ]
Wang, Xingzhu [2 ]
Sun, Xiaohua [3 ]
Fang, Junfeng [1 ]
机构
[1] Chinese Acad Sci, Ningbo Inst Mat Technol & Engn, Key Lab Graphene Technol & Applicat Zhejiang Prov, Ningbo 315201, Zhejiang, Peoples R China
[2] Xiangtan Univ, Coll Chem, Xiangtan 411105, Hunan, Peoples R China
[3] China Three Gorges Univ, Coll Mat & Chem Engn, Yichang 443002, Peoples R China
基金
中国国家自然科学基金;
关键词
Narrow band-gap conjugated polymer; Polyelectrolyte; Cathode modification; Organic solar cell; POWER-CONVERSION EFFICIENCY; TRANSPORT LAYER; ENHANCEMENT;
D O I
10.1016/j.orgel.2017.04.026
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Narrow band-gap conjugated polyelectrolytes (NBGCPs) combine the advantages of narrow band-gap conjugated polymers and polyelectrolytes. However, they are limited reported and seldom used in polymer solar cells (PSCs). Herein, we design and synthesized two PTB7-based NBGCPs, cationic PTB7-NBr and zwitterionic PTB7-NSO3, as cathode interlayers (CILs) in conventional PSCs. Compared to poly [4,8-bis(2-ethylhexyloxyl)benzo[1,2-b:4,5-b']dithiophene-2,6-diyl-alt-ethylhexyl-3-fuorothithieno[3,4-b]thiophene-2-carboxylate-4,6-diyl] (PTB7), both PTB7-NBr and PTB7-NSO3 have similar absorption while PTB7-NBr has a higher HOMO level than PTB7 and PTB7-NSO3. With PTB7-NBr and PTB7-NSO3 as CIL and Al as cathode, the devices both exhibited high efficiencies. The optimal power conversion efficiencies (PCEs) of PTB7-NBr device and PTB7-NSO3 device are about 9%. However, PTB7-NBr devices are less sensitive to the CIL film thicknesses and the PCEs of PTB7-NSO3 device decrease sharply when the thickness of PTB7-NSO3 over 3 nm. What's more, when the devices with an Ag cathode PTB7-NBr exhibits a much better interfacial modification than PTB7-NSO3. Ultraviolet photoelectron spectroscopy (UPS) indicate that the work functions of PTB7-NBr and PTB7-NSO3 film on Al are identical while on Ag they are different. We suggest the insensitivity to CIL thickness and good performance for Ag device of PTB7-NBr devices are attributed to the bromide anions in PTB7-NBr. The report on PTB7-based NBGCPs broads the types of organic cathode interfacial materials and is beneficial to the deep insight of ionic effect in electrolyte materials. (C) 2017 Elsevier B.V. All rights reserved.
引用
收藏
页码:94 / 101
页数:8
相关论文
共 31 条
  • [21] Facile Strategy for Third Component Optimization in Wide-Band-Gap π-Conjugated Polymer Donor-Based Efficient Ternary All-Polymer Solar Cells
    Gokulnath, Thavamani
    Feng, Kui
    Park, Ho-Yeol
    Do, Yeongju
    Park, Hyungjin
    Gayathri, Rajalapati Durga
    Reddy, Saripally Sudhaker
    Kim, Jehan
    Guo, Xugang
    Yoon, Jinhwan
    Jin, Sung-Ho
    ACS APPLIED MATERIALS & INTERFACES, 2022, 14 (09) : 11211 - 11221
  • [22] The design of highly efficient polymer solar cells with outstanding short-circuit current density based on small band gap electron acceptor
    Ma, Danyang
    Feng, Shiyu
    Zhang, Zhe
    Li, Cuihong
    Yan, Shouke
    Bo, Zhishan
    DYES AND PIGMENTS, 2018, 150 : 363 - 369
  • [23] Impact of non-fullerene acceptors and solvent additive on the nanomorphology, device performance, and photostability of PTB7-Th polymer based organic solar cells
    Khan, Javed Alam
    Sharma, Ramakant
    Panwar, Ajay Singh
    Gupta, Dipti
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2022, 55 (49)
  • [24] Phenothiazine-Based D-A-π-A Dyes for Highly Efficient Dye-Sensitized Solar Cells: Effect of Internal Acceptor and Non-Conjugated π-Spacer on Device Performance
    Nagane, Satyawan
    Ichake, Amol
    Agrawal, Ishita
    Sadhanala, Aditya
    Friend, Richard H.
    Ogale, Satishchandra
    Wadgaonkar, Prakash P.
    CHEMPLUSCHEM, 2017, 82 (02): : 280 - 286
  • [25] Highly Efficient All-Polymer Solar Cells from a Dithieno[3,2-f:2′,3′-h]quinoxaline-Based Wide Band Gap Donor
    Zhao, Tingxing
    Cao, Congcong
    Wang, Hengtao
    Shen, Xiangyu
    Lai, Hanjian
    Zhu, Yulin
    Chen, Hui
    Han, Liang
    Rehman, Tahir
    He, Feng
    MACROMOLECULES, 2021, 54 (24) : 11468 - 11477
  • [26] Tuning the physical properties of pyrrolo[3,4-c] pyrrole-1,3-dione-based highly efficient large band gap polymers via the chemical modification on the polymer backbone for polymer solar cells
    Tamilavan, Vellaiappillai
    Lee, Dal Yong
    Agneeswari, Rajalingam
    Cho, Shinuk
    Jin, Youngeup
    Park, Sung Heum
    Hyun, Myung Ho
    RSC ADVANCES, 2015, 5 (120): : 99217 - 99227
  • [27] Pyrrolo[3,4-c]pyrrole-1,3-dione-Based Large Band Gap Polymers Containing Benzodithiophene Derivatives for Highly Efficient Simple Structured Polymer Solar Cells
    Tamilavan, Vellaiappillai
    Roh, Kyung Hwan
    Agneeswari, Rajalingam
    Lee, Dal Yong
    Cho, Shinuk
    Jin, Youngeup
    Park, Sung Heum
    Hyun, Myung Ho
    JOURNAL OF POLYMER SCIENCE PART A-POLYMER CHEMISTRY, 2014, 52 (24) : 3564 - 3574
  • [28] Highly Crystalline Low Band Gap Polymer Based on Thieno[3,4-c]pyrrole-4,6-dione for High-Performance Polymer Solar Cells with a >400 nm Thick Active Layer
    Jung, Jae Woong
    Russell, Thomas P.
    Jo, Won Ho
    ACS APPLIED MATERIALS & INTERFACES, 2015, 7 (24) : 13666 - 13674
  • [29] N-Acyldithieno[3,2-b:2',3'-d]pyrrole-Based Low-Band-Gap Conjugated Polymer Solar Cells with Amine-Modified [6,6]-Phenyl-C61-butyric Acid Ester Cathode Inter layers
    Hong, Deng
    Lv, Menglan
    Lei, Ming
    Chen, Yu
    Lu, Ping
    Wang, Yanguang
    Zhu, Jin
    Wang, Haiqiao
    Gao, Mei
    Watkins, Scott E.
    Chen, Xiwen
    ACS APPLIED MATERIALS & INTERFACES, 2013, 5 (21) : 10995 - 11003
  • [30] New wide band gap ?-conjugated copolymers based on anthra[1,2-b: 4,3-b?: 6,7-c?] trithiophene-8,12-dione for high performance non-fullerene polymer solar cells with an efficiency of 15.07 %
    Keshtov, Mukhamed L.
    Konstantinov, Igor O.
    Khokhlov, Alexei R.
    Kuklin, Sergei A.
    Alekseev, Vladimir G.
    Ostapov, Ilya E.
    Zou, Yingping
    Singhal, Rahul
    Dahiya, Hemraj
    Sharma, Ganesh D.
    POLYMER, 2022, 251