• Laser & Optoelectronics Progress
  • Vol. 60, Issue 15, 1500008 (2023)
Hongzhong Tan, Dahai Gao, Baolin Yan, and Yuhua Dai*
Author Affiliations
  • Beijing Key Laboratory of Special Elastomeric Composite Materials, College of New Materials and Chemical Engineering, Beijing Institute of Petrochemical Technology, Beijing 102617, China
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    DOI: 10.3788/LOP223428 Cite this Article Set citation alerts
    Hongzhong Tan, Dahai Gao, Baolin Yan, Yuhua Dai. Research Progress on Dye-Sensitized Solar Cells TiO2 Photoanodes[J]. Laser & Optoelectronics Progress, 2023, 60(15): 1500008 Copy Citation Text show less
    Band structure of wide bandgap semiconductors[11]
    Fig. 1. Band structure of wide bandgap semiconductors11
    Optimization and modification of TiO2 photoanodes in recent years [16-21,37]
    Fig. 2. Optimization and modification of TiO2 photoanodes in recent years 16-2137
    Several improved microstructure SEM diagrams. (a) One-dimensional structure[26]; (b) two-dimensional and three-dimensional structure[17]; (c) zero-dimensional structure[14]
    Fig. 3. Several improved microstructure SEM diagrams. (a) One-dimensional structure26; (b) two-dimensional and three-dimensional structure17; (c) zero-dimensional structure14
    Different composite structures. (a) Bilayer structure; (b) core-shell structure; (c) hollow microsphere structure; (d) parallel structure
    Fig. 4. Different composite structures. (a) Bilayer structure; (b) core-shell structure; (c) hollow microsphere structure; (d) parallel structure
    Schematic diagram of the action of the barrier layer
    Fig. 5. Schematic diagram of the action of the barrier layer
    ResearcherFilm making methodModification methodPCE /%Year
    Yang et al.27Hydrothermal methodTiO2 NWs5.262020
    Shi et al.28Hydrothermal methodTNT1.372017
    Lei et al.29Hydrothermal methodTiO2 NSs6.662014
    Liu et al.17Hydrothermal methodAHHT6.132019
    Yang et al.16Alkaline hydrothermal methodTiO2 HMSs NSs5.972017
    Bae et al.14Sol-gel methodUltrasonic treatment3.352022
    Ge et al.30Hydrothermal methodTNA8.342021
    Cao et al.37Anodization、Screen printingTNT composite TiO2 NPs6.432013
    Yang et al.40ElectrospinningTiO2 NFs composite ZnO NPs6.542017
    Ye et al.41Template assist methodSnO2/TiO2 composite HSs8.432020
    Wei et al.18ElectrospinningSnO2/TiO2 composite NWs8.32021
    Irfan et al.44Sol-gel methodFe ion irradiation3.262022
    Feng et al.45Hydrothermal steam induces crystallizationZn atom doping8.182019
    Kunmar et al.19Sol-gel method、Hydrothermal methodAromatic amine doping9.842020
    Rajaramanan et al.51Doctor blade methodNi/N co-doping7.052021
    et al.46Hydrothermal method、Spin coatingYb-Er-Y doping6.892019
    Bernadsha et al.47Hydrothermal methodNd、Dy doping5.48,5.092021
    Khan et al.48Sol-gel methodZn/Cu co-doping32019
    Zheng et al.49ElectrospinningAu doped with TiO2 NFs5.082018
    Li et al.50Hydrothermal methodAu doped with TiO2 MSs7.212019
    Bhojanan et al.20Sol-gel methodAg doped withTiO2NSs5.242020
    Chen et al.58AnodizationTNT/SiO2 core shell structure8.872020
    Suresh et al.13Magnetron sputteringNb2O5 barrier layer6.942016
    Ramasamy et al.59Dipping methodHfO2 barrier layer9.592013
    Wang et al.21ALDAl2O3 barrier layer8.62015
    Yang et al.60ElectrospinningZrO2 barrier layer6.722019
    Shah et al.61Spin coatingLayer by layer TiCl4 treatment8.32020
    Maiti et al.62Doctor blade methodCold argon plasma treatment5.012019
    Shang et al.63Hydrothermal methodOzone treatment3.962020
    Table 1. Conversion efficiency table of each photoanode research in recent years
    Hongzhong Tan, Dahai Gao, Baolin Yan, Yuhua Dai. Research Progress on Dye-Sensitized Solar Cells TiO2 Photoanodes[J]. Laser & Optoelectronics Progress, 2023, 60(15): 1500008
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