Rose bengal-sensitized nanocrystalline ceria photoanode for dye-sensitized solar cell application

被引:31
|
作者
Sayyed, Suhail A. A. R. [1 ,2 ]
Beedri, Niyamat I. [1 ]
Kadam, Vishal S. [1 ]
Pathan, Habib M. [1 ]
机构
[1] Savitribai Phule Pune Univ, Dept Phys, Adv Phys Lab, Pune 411007, Maharashtra, India
[2] BPHE Soc, Ahmednagar Coll, Dept Phys, Ahmednagar 414001, India
关键词
Wide bandgap; dye-sensitized solar cells; CeO2; rose bengal dye; ORGANIC-DYES; LOW-COST; CEO2; PERFORMANCE; TIO2; ZNO; NB2O5; ELECTRON;
D O I
10.1007/s12034-016-1279-7
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
For efficient charge injection and transportation, wide bandgap nanostructured metal oxide semiconductors with dye adsorption surface and higher electron mobility are essential properties for photoanode in dye-sensitized solar cells (DSSCs). TiO2-based DSSCs are well established and so far have demonstrated maximum power conversion efficiency when sensitized with ruthenium-based dyes. Quest for new materials and/or methods is continuous process in scientific investigation, for getting desired comparative results. The conduction band (CB) position of CeO2 photoanode lies below lowest unoccupied molecular orbital level (LUMO) of rose bengal (RB) dye. Due to this, faster electron transfer from LUMO level of RB dye to CB of CeO2 is facilitated. Recombination rate of electrons is less in CeO2 photoanode than that of TiO2 photoanode. Hence, the lifetime of electrons is more in CeO2 photoanode. Therefore, we have replaced TiO2 by ceria (CeO2) and expensive ruthenium-based dye by a low cost RB dye. In this study, we have synthesized CeO2 nanoparticles. X-ray diffraction (XRD) analysis confirms the formation of CeO2 with particle size similar to 7 nm by Scherrer formula. The bandgap of 2.93 eV is calculated using UV-visible absorption data. The scanning electron microscopy (SEM) images show formation of porous structure of photoanode, which is useful for dye adsorption. The energy dispersive spectroscopy is in confirmation with XRD results, confirming the presence of Ce and O in the ratio of 1:2. UV-visible absorption under diffused reflectance spectra of dye-loaded photoanode confirms the successful dye loading. UV-visible transmission spectrum of CeO2 photoanode confirms the transparency of photoanode in visible region. The electrochemical impedance spectroscopy analysis confirms less recombination rate and more electron lifetime in RB-sensitized CeO2 than TiO2 photoanode. We found that CeO2 also showed with considerable difference between dark and light DSSCs performance, when loaded with RB dye. The working mechanism of solar cells with fluorine-doped tin oxide (FTO)/CeO2/RB dye/carbon-coated FTO is discussed. These solar cells show V (OC) similar to 360 mV, J (SC) similar to 0.25 mA cm (-2) and fill factor similar to 63% with efficiency of 0.23%. These results are better as compared to costly ruthenium dye-sensitized CeO2 photoanode.
引用
收藏
页码:1381 / 1387
页数:7
相关论文
共 50 条
  • [41] Improved dye-sensitized solar cell with a ZnO nanotree photoanode by hydrothermal method
    Kuo, Shou-Yi
    Yang, Jui-Fu
    Lai, Fang-I
    NANOSCALE RESEARCH LETTERS, 2014, 9 : 1 - 6
  • [42] Improving the photovoltaic performance of dye-sensitized solar cell by graphene/titania photoanode
    Zhao, Junchang
    Wu, Jihuai
    Zheng, Ming
    Huo, Jinghao
    Tu, Yongguang
    ELECTROCHIMICA ACTA, 2015, 156 : 261 - 266
  • [43] An improvement of dye-sensitized solar cell by acid treatment on modified ZnO photoanode
    Moungsrijun, Sasimonton
    Sujinnapram, Supphadate
    INTEGRATED FERROELECTRICS, 2017, 177 (01) : 17 - 29
  • [44] Nanostructured SnO2 photoanode-based dye-sensitized solar cells
    Li, Zhengdao
    Zhou, Yong
    Sun, Ruzhong
    Xiong, Yan
    Xie, Haiquan
    Zou, Zhigang
    CHINESE SCIENCE BULLETIN, 2014, 59 (18): : 2122 - 2134
  • [45] Application of carbon dots in dye-sensitized solar cells: A review
    Gao, Ningxiao
    Huang, Libing
    Li, Tianya
    Song, Jinghui
    Hu, Hengwei
    Liu, Yong
    Ramakrishna, Seeram
    JOURNAL OF APPLIED POLYMER SCIENCE, 2020, 137 (10)
  • [46] The efficiency of ZnO/platinum octaethylporphyrin (PtOEP) nanocomposite photoanode at dye-sensitized solar cells
    Abuelwafa, A. A.
    Choudhury, M. S. H.
    Dongol, M.
    El-Nahass, M. M.
    Soga, T.
    JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS, 2018, 29 (16) : 14232 - 14238
  • [47] Application methods for graphite as catalyzer in dye-sensitized solar cells
    Hoelscher, Florian
    Truemper, Peer-Robin
    Junger, Ken Juhasz
    Schwenzfeier-Hellkamp, Eva
    Ehrmann, Andrea
    OPTIK, 2019, 178 : 1276 - 1279
  • [48] The dye-sensitized solar cell database
    Vishwesh Venkatraman
    Rajesh Raju
    Solon P. Oikonomopoulos
    Bjørn K. Alsberg
    Journal of Cheminformatics, 10
  • [49] Hierarchical Tin Oxide Nanostructures for Dye-Sensitized Solar Cell Application
    Abd-Ellah, Marwa
    Bazargan, Samad
    Thomas, Joseph P.
    Rahman, Md Anisur
    Srivastava, Saurabh
    Wang, Xiongyao
    Heinig, Nina F.
    Leung, Kam Tong
    ADVANCED ELECTRONIC MATERIALS, 2015, 1 (09):
  • [50] Influence of grain size of ZnO nanocrystalline films for application in dye-sensitized solar cells
    Kao, M. C.
    Young, S. L.
    Chen, H. Z.
    Chen, Y. C.
    Hsieh, P. T.
    Wei, S. Y.
    INTERNATIONAL JOURNAL OF MODERN PHYSICS B, 2007, 21 (18-19): : 3448 - 3454