• Laser & Optoelectronics Progress
  • Vol. 56, Issue 14, 140001 (2019)
Xiahui Yu1、2, Kaixiang Du1、2, and Peizhi Yang1、2、*
Author Affiliations
  • 1 Key Laboratory of Renewable Energy Advanced Materials and Manufacturing Technology, Ministry of Education, Kunming, Yunnan 650500, China
  • 2 Solar Energy Research Institute, Yunnan Normal University, Kunming, Yunnan 650500, China
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    DOI: 10.3788/LOP56.140001 Cite this Article Set citation alerts
    Xiahui Yu, Kaixiang Du, Peizhi Yang. Preparation of Low-Dimensional Black Phosphorus and its Application in Solar Cells[J]. Laser & Optoelectronics Progress, 2019, 56(14): 140001 Copy Citation Text show less
    Crystal structures of black phosphorus. (a) Side view; (b) side view of single layer black phosphorus; (c) top view of single layer black phosphorus
    Fig. 1. Crystal structures of black phosphorus. (a) Side view; (b) side view of single layer black phosphorus; (c) top view of single layer black phosphorus
    Optical images of black phosphorus before and after Ar+ plasma etching. (a) Before etching; (b) after etching
    Fig. 2. Optical images of black phosphorus before and after Ar+ plasma etching. (a) Before etching; (b) after etching
    Preparation of two-dimensional black phosphorus by electrochemical method
    Fig. 3. Preparation of two-dimensional black phosphorus by electrochemical method
    Preparation of black phosphorus quantum dots by probe ultrasonic combined with ice bath ultrasonic
    Fig. 4. Preparation of black phosphorus quantum dots by probe ultrasonic combined with ice bath ultrasonic
    Preparation of black phosphorus quantum dots by solvothermal method
    Fig. 5. Preparation of black phosphorus quantum dots by solvothermal method
    Preparation of black phosphorus quantum dots by shearing method
    Fig. 6. Preparation of black phosphorus quantum dots by shearing method
    Diagram of chemical vapor deposition. (a) Preparation of red phosphorus film; (b) preparation of black phosphorus film
    Fig. 7. Diagram of chemical vapor deposition. (a) Preparation of red phosphorus film; (b) preparation of black phosphorus film
    BN-BP-BN interlayer heterogeneous section. (a) Preparation process diagram; (b) device structural diagram; (c) O2-plasma etching; (d) optical image of device
    Fig. 8. BN-BP-BN interlayer heterogeneous section. (a) Preparation process diagram; (b) device structural diagram; (c) O2-plasma etching; (d) optical image of device
    Preparation route of two kinds of heterojunction
    Fig. 9. Preparation route of two kinds of heterojunction
    Solar cell based on BP/PCBM heterojunction. (a) Structural diagram; (b) energy level structure diagram
    Fig. 10. Solar cell based on BP/PCBM heterojunction. (a) Structural diagram; (b) energy level structure diagram
    Quasi-solid double-sided N-type dye-sensitized solar cell. (a) Structural diagram; (b) energy level diagram
    Fig. 11. Quasi-solid double-sided N-type dye-sensitized solar cell. (a) Structural diagram; (b) energy level diagram
    Two kinds of organic solar cells. (a) Diagram of solar cell; (b) J-V characteristic curve of conventional structure; (c) J-V characteristic curve of inverted structure
    Fig. 12. Two kinds of organic solar cells. (a) Diagram of solar cell; (b) J-V characteristic curve of conventional structure; (c) J-V characteristic curve of inverted structure
    Synthesis diagram of black phosphorus/perovskite hybrid structure
    Fig. 13. Synthesis diagram of black phosphorus/perovskite hybrid structure
    Structural diagram of hybrid perovskite solar cells
    Fig. 14. Structural diagram of hybrid perovskite solar cells
    Xiahui Yu, Kaixiang Du, Peizhi Yang. Preparation of Low-Dimensional Black Phosphorus and its Application in Solar Cells[J]. Laser & Optoelectronics Progress, 2019, 56(14): 140001
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