Defect engineering of solution-processed ZnO:Li window layers towards high-efficiency and low-cost kesterite photovoltaics

被引:8
|
作者
Xiao, Qian [1 ]
Kou, Dongxing [1 ]
Zhou, Wenhui [1 ]
Zhou, Zhengji [1 ]
Yuan, Shengjie [1 ]
Qi, Yafang [1 ]
Meng, Yuena [1 ]
Han, Litao [1 ]
Zheng, Zhi [2 ]
Wu, Sixin [1 ]
机构
[1] Henan Univ, Natl & Local Joint Engn Res Ctr High Efficiency Di, Collaborat Innovat Ctr Nano Funct Mat & Applicat, Sch Mat Sci & Engn,Key Lab Special Funct Mat,Minis, Kaifeng 475004, Peoples R China
[2] Xuchang Univ, Inst Surface Micro & Nano Mat, Coll Adv Mat & Energy, Key Lab Micronano Energy Storage & Convers Mat He, Xuchang 461000, Henan, Peoples R China
基金
中国国家自然科学基金;
关键词
SOLAR-CELLS; PERFORMANCE; CU2ZNSNS4; FILMS; AG;
D O I
10.1039/d3ta01431b
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Advances in the development of kesterite Cu2ZnSn(S,Se)(4) (CZTSSe) solar cells are urgently needed to further exploit their high-efficiency and low-cost nature. However, almost all the CZTSSe photovoltaics are presently fabricated using physically sputter-deposited i-ZnO as a window layer, which often results in self-doping with detrimental oxygen vacancies (V-O) and zinc interstitial (Zn-i) defects, leading to ineffective charge collection and enlarged interface recombination losses. Herein, a solution-processed ZnO:Li nanoparticle (NP) window layer is demonstrated via the construction of a high-quality ZnO:Li/CdS/CZTSSe heterojunction to enhance the charge collection and minimize the interface recombination. The interstitial Li doping at a certain content significantly enhances the electrical conductivity of ZnO and quasi-Fermi level splitting at the p-n junction interface and reduces the concentration of V-O and Zn-i defects. These electric benefits finally improve the conversion efficiency from 11.31% up to 12.60% with significant gains in FF and V-oc. Our findings suggest that developing a ZnO:Li NP window layer is an effective method to manage electrical conductivity, contact resistance and interface band offset at the p-n junction, boosting the development of high-efficiency and low-cost kesterite solar cells to a higher level.
引用
收藏
页码:11161 / 11169
页数:9
相关论文
共 50 条
  • [41] High-efficiency organic solar cells from low-cost pentacyclic fused-ring electron acceptors via crystal engineering
    Wei, Wenkui
    Yuan, Xiyue
    Zhong, Jianbin
    Wang, Zhiqiang
    Zhou, Xia
    Zhao, Feixiang
    Feng, Dinglong
    Zhang, Yue
    Chen, Weidi
    Yang, Mingqun
    Zhang, Wei
    Ma, Zaifei
    Tang, Zheng
    Lu, Xinhui
    Huang, Fei
    Cao, Yong
    Duan, Chunhui
    ENERGY & ENVIRONMENTAL SCIENCE, 2024, 17 (18) : 6627 - 6639
  • [42] Solution-processed oxide semiconductors for low-cost and high-performance thin-film transistors and fabrication of organic light-emitting-diode displays
    Ryu, Myung-Kwan
    Park, KyungBae
    Seon, Jong-Baek
    Lee, Sang Yoon
    JOURNAL OF THE SOCIETY FOR INFORMATION DISPLAY, 2010, 18 (10) : 734 - 744
  • [43] A low-temperature solution-processed indium incorporated zinc oxide electron transport layer for high-efficiency lead sulfide colloidal quantum dot solar cells
    Bashir, Rabia
    Bilal, Muhammad Kashif
    Bashir, Amna
    Zhao, Jianhong
    Asif, Sana Ullah
    Ahmad, Waqar
    Xie, Jiyang
    Hu, Wanbiao
    NANOSCALE, 2021, 13 (30) : 12991 - 12999
  • [44] Low-Cost Biomass-Gel-Induced Conductive Polymer Networks for High-Efficiency Polysulfide Immobilization and Catalytic Conversion in Li-S Batteries
    Jiang, Helong
    Guo, Jiao
    Tao, Jiahao
    Li, Xiangcun
    Zheng, Wenji
    He, Gaohong
    Dai, Yan
    ACS APPLIED ENERGY MATERIALS, 2022, 5 (02) : 2308 - 2317
  • [45] Metal-organic frameworks as precursors for making low-cost high-efficiency electrocatalysts in fuel cell and Li-O2 battery applications
    Liu, Di-Jia
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2012, 244
  • [46] Solution-Processed Low-Bandgap CuIn(S,Se)2 Absorbers for High-Efficiency Single-Junction and Monolithic Chalcopyrite-Perovskite Tandem Solar Cells
    Uhl, Alexander R.
    Rajagopal, Adharsh
    Clark, James A.
    Murray, Anna
    Feurer, Thomas
    Buecheler, Stephan
    Jen, Alex K. -Y.
    Hillhouse, Hugh W.
    ADVANCED ENERGY MATERIALS, 2018, 8 (27)
  • [47] High-efficiency and low-cost preparation of solid electrolytes Li7La3Zr2O12 based on molten salt method
    Zhang, Yanhua
    Deng, Yuxin
    Gao, Xinglong
    Lv, Chao
    Luo, Dawei
    Xiang, Xing
    JOURNAL OF ALLOYS AND COMPOUNDS, 2021, 881
  • [48] Molecular Engineering Using an Anthanthrone Dye for Low-Cost Hole Transport Materials: A Strategy for Dopant-Free, High-Efficiency, and Stable Perovskite Solar Cells
    Hong Duc Pham
    Thu Trang Do
    Kim, Jinhyun
    Charbonneau, Cecile
    Manzhos, Sergei
    Feron, Krishna
    Tsoi, Wing Chung
    Durrant, James R.
    Jain, Sagar M.
    Sonar, Prashant
    ADVANCED ENERGY MATERIALS, 2018, 8 (16)
  • [49] Gradient Conduction Band Energy Engineering Driven High-Efficiency Solution-Processed Cu2ZnSn(S,Se)4/ZnxCd1-x S Solar Cells
    Xu, Zhen
    Gao, Qianqian
    Cui, Changcheng
    Yuan, Shengjie
    Kou, Dongxing
    Zhou, Zhengji
    Zhou, Wenhui
    Meng, Yuena
    Qi, Yafang
    Ishaq, Muhammad
    Shah, Usman Ali
    Wu, Sixin
    ADVANCED FUNCTIONAL MATERIALS, 2023, 33 (03)
  • [50] Solution-processed high-efficiency cadmium-free Cu-Zn-In-S-based quantum-dot light-emitting diodes with low turn-on voltage
    Liu, Zhenyang
    Zhao, Ke
    Tang, Aiwei
    Xie, Yihao
    Qian, Lei
    Cao, Weiran
    Yang, Yixing
    Chen, Yu
    Teng, Feng
    ORGANIC ELECTRONICS, 2016, 36 : 97 - 102