Solvent Engineering for High-Performance PbS Quantum Dots Solar Cells

被引:19
|
作者
Wu, Rongfang [1 ]
Yang, Yuehua [1 ]
Li, Miaozi [3 ]
Qin, Donghuan [1 ]
Zhang, Yangdong [2 ]
Hou, Lintao [2 ]
机构
[1] South China Univ Technol, State Key Lab Luminescent Mat & Devices, Inst Polymer Optoelect Mat & Devices, Guangzhou 510640, Guangdong, Peoples R China
[2] Jinan Univ, Dept Phys,Siyuan Lab, Guangdong Prov Key Lab Opt Fiber Sensing & Commun, Guangzhou Key Lab Vacuum Coating Technol & New En, Guangzhou 510632, Guangdong, Peoples R China
[3] South China Univ Technol, Sch Mat Sci & Engn, Guangzhou 510640, Guangdong, Peoples R China
来源
NANOMATERIALS | 2017年 / 7卷 / 08期
基金
美国国家科学基金会; 中国国家自然科学基金;
关键词
colloidal quantum dots; solar cells; PbS; solvent engineering; OPEN-CIRCUIT VOLTAGE; COLLOIDAL NANOCRYSTALS; PLANAR-HETEROJUNCTION; SURFACE PASSIVATION; HALIDE PASSIVATION; SOLIDS; PHOTOVOLTAICS; EFFICIENCY; LIGANDS; PHOTOCURRENT;
D O I
10.3390/nano7080201
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
PbS colloidal quantum dots (CQDs) solar cells have already demonstrated very impressive advances in recent years due to the development of many different techniques to tailor the interface morphology and compactness in PbS CQDs thin film. Here, n-hexane, n-octane, n-heptane, isooctane and toluene or their hybrids are for the first time introduced as solvent for comparison of the dispersion of PbS CQDs. PbS CQDs solar cells with the configuration of PbS/TiO2 heterojunction are then fabricated by using different CQDs solution under ambient conditions. The performances of the PbS CQDs solar cells are found to be tuned by changing solvent and its content in the PbS CQDs solution. The best device could show a power conversion efficiency (PCE) of 7.64% under AM 1.5 G illumination at 100 mW cm(-2) in a n-octane/isooctane (95%/5% v/v) hybrid solvent scheme, which shows a similar to 15% improvement compared to the control devices. These results offer important insight into the solvent engineering of high-performance PbS CQDs solar cells.
引用
收藏
页数:13
相关论文
共 50 条
  • [21] Preparation of PbS quantum dots for quantum dot-sensitized solar cells
    Ge Mei-Ying
    Liu Yu-Feng
    Luo Hai-Han
    Huang Chan-Yan
    Sun Yan
    Dai Ning
    JOURNAL OF INFRARED AND MILLIMETER WAVES, 2013, 32 (05) : 385 - 388
  • [22] Novel Hybrid Ligands for Passivating PbS Colloidal Quantum Dots to Enhance the Performance of Solar Cells
    Yuehua Yang
    Baofeng Zhao
    Yuping Gao
    Han Liu
    Yiyao Tian
    Donghuan Qin
    Hongbin Wu
    Wenbo Huang
    Lintao Hou
    Nano-Micro Letters, 2015, 7 : 325 - 331
  • [23] Novel Hybrid Ligands for Passivating PbS Colloidal Quantum Dots to Enhance the Performance of Solar Cells
    Yang, Yuehua
    Zhao, Baofeng
    Gao, Yuping
    Liu, Han
    Tian, Yiyao
    Qin, Donghuan
    Wu, Hongbin
    Huang, Wenbo
    Hou, Lintao
    NANO-MICRO LETTERS, 2015, 7 (04) : 325 - 331
  • [24] Achieving high-performance PbS quantum dot solar cells by improving hole extraction through Ag doping
    Hu, Long
    Zhang, Zhilong
    Patterson, Robert J.
    Hu, Yicong
    Chen, Weijian
    Chen, Chao
    Li, Dengbing
    Hu, Chao
    Ge, Cong
    Chen, Zihan
    Yuan, Lin
    Yan, Chang
    Song, Ning
    Teh, Zhi Li
    Conibeer, Gavin J.
    Tang, Jiang
    Huang, Shujuan
    NANO ENERGY, 2018, 46 : 212 - 219
  • [25] Interface Engineering to Drive High-Performance MXene/PbS Quantum Dot Nir Photodiode
    Di, Yunxiang
    Ba, Kun
    Chen, Yan
    Wang, Xudong
    Zhang, Mingqing
    Huang, Xinning
    Long, Yi
    Liu, Mengdi
    Zhang, Shukui
    Tang, Weiyi
    Huang, Zhangcheng
    Lin, Tie
    Shen, Hong
    Meng, Xiangjian
    Han, Meikang
    Liu, Qi
    Wang, Jianlu
    ADVANCED SCIENCE, 2024, 11 (06)
  • [26] Heterogeneous system synthesis of high quality PbS quantum dots for efficient infrared solar cells
    Wang, Bo
    Li, Mingyu
    Liu, Yuxuan
    Liang, Xinyi
    Yang, Yang
    Lan, Xinzheng
    Gao, Liang
    Zhang, Jianbing
    Tang, Jiang
    NANO RESEARCH, 2023, 16 (04) : 5750 - 5755
  • [27] Heterogeneous system synthesis of high quality PbS quantum dots for efficient infrared solar cells
    Bo Wang
    Mingyu Li
    Yuxuan Liu
    Xinyi Liang
    Yang Yang
    Xinzheng Lan
    Liang Gao
    Jianbing Zhang
    Jiang Tang
    Nano Research, 2023, 16 : 5750 - 5755
  • [28] Effects of PbS quantum dots layer and different light scattering films on the photovoltaic performance of double passivated PbS, CdS and CdSe quantum dots sensitized solar cells
    Sotodeian, Mahboubeh
    Marandi, Maziar
    SOLAR ENERGY, 2021, 221 : 418 - 432
  • [29] High-performance flexible and broadband photodetectors based on PbS quantum dots/ZnO nanoparticles heterostructure
    Peng, Mingfa
    Wang, Yongjie
    Shen, Qingqing
    Xie, Xinkai
    Zheng, Hechuang
    Ma, Wanli
    Wen, Zhen
    Sun, Xuhui
    SCIENCE CHINA-MATERIALS, 2019, 62 (02) : 225 - 235
  • [30] Hybrid polymer/ZnO solar cells sensitized by PbS quantum dots
    Wang, Lidan
    Zhao, Dongxu
    Su, Zisheng
    Shen, Dezhen
    NANOSCALE RESEARCH LETTERS, 2012, 7 : 1 - 6