Design and Fabrication of Pt-Free Counter Electrode for Photovoltaic Application
We report the synthesis of phosphorus (P)-doped reduced graphene oxide (P-rGO) using a hydrothermal method at 180°C for 7 h. Furthermore, the amorphous nature and phase purity of the hydrothermally synthesized P-rGO was studied by powder x-ray diffraction. The characteristic sheet-like surface struc...
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Published in: | Journal of electronic materials Vol. 53; no. 11; pp. 6863 - 6871 |
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Abstract | We report the synthesis of phosphorus (P)-doped reduced graphene oxide (P-rGO) using a hydrothermal method at 180°C for 7 h. Furthermore, the amorphous nature and phase purity of the hydrothermally synthesized P-rGO was studied by powder x-ray diffraction. The characteristic sheet-like surface structure of the P-rGO was confirmed by scanning electron microscopy. The presence of P in the P-rGO was authenticated by using energy-dispersive x-ray spectroscopy and photoelectron x-ray spectroscopy. The synthesized P-rGO was employed as a low-cost and Pt-free counter electrode material for the construction of dye-sensitized solar cells (DSSCs). The effect of annealing temperature on the construction of the DSSCs using P-rGO was also studied, and the highest power conversion efficiency of 6.3% and photocurrent density of 15.37 mA/cm
2
were obtained at 200°C. The platinum counter electrode-based DSSCs exhibited the power conversion efficiency of 7.4%. The performance of the P-rGO counter electrode-based DSSCs was reasonable and can be further improved by developing novel device architectures. This work proposes the simple, eco-friendly, and Pt-free counter electrode for the construction of DSSCs with a decent performance. |
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AbstractList | We report the synthesis of phosphorus (P)-doped reduced graphene oxide (P-rGO) using a hydrothermal method at 180°C for 7 h. Furthermore, the amorphous nature and phase purity of the hydrothermally synthesized P-rGO was studied by powder x-ray diffraction. The characteristic sheet-like surface structure of the P-rGO was confirmed by scanning electron microscopy. The presence of P in the P-rGO was authenticated by using energy-dispersive x-ray spectroscopy and photoelectron x-ray spectroscopy. The synthesized P-rGO was employed as a low-cost and Pt-free counter electrode material for the construction of dye-sensitized solar cells (DSSCs). The effect of annealing temperature on the construction of the DSSCs using P-rGO was also studied, and the highest power conversion efficiency of 6.3% and photocurrent density of 15.37 mA/cm
2
were obtained at 200°C. The platinum counter electrode-based DSSCs exhibited the power conversion efficiency of 7.4%. The performance of the P-rGO counter electrode-based DSSCs was reasonable and can be further improved by developing novel device architectures. This work proposes the simple, eco-friendly, and Pt-free counter electrode for the construction of DSSCs with a decent performance. We report the synthesis of phosphorus (P)-doped reduced graphene oxide (P-rGO) using a hydrothermal method at 180°C for 7 h. Furthermore, the amorphous nature and phase purity of the hydrothermally synthesized P-rGO was studied by powder x-ray diffraction. The characteristic sheet-like surface structure of the P-rGO was confirmed by scanning electron microscopy. The presence of P in the P-rGO was authenticated by using energy-dispersive x-ray spectroscopy and photoelectron x-ray spectroscopy. The synthesized P-rGO was employed as a low-cost and Pt-free counter electrode material for the construction of dye-sensitized solar cells (DSSCs). The effect of annealing temperature on the construction of the DSSCs using P-rGO was also studied, and the highest power conversion efficiency of 6.3% and photocurrent density of 15.37 mA/cm2 were obtained at 200°C. The platinum counter electrode-based DSSCs exhibited the power conversion efficiency of 7.4%. The performance of the P-rGO counter electrode-based DSSCs was reasonable and can be further improved by developing novel device architectures. This work proposes the simple, eco-friendly, and Pt-free counter electrode for the construction of DSSCs with a decent performance. |
Author | Khan, Mohd Quasim Alsulmi, Ali Ahmad, Khursheed Oh, Tae Hwan |
Author_xml | – sequence: 1 givenname: Khursheed surname: Ahmad fullname: Ahmad, Khursheed organization: School of Chemical Engineering, Yeungnam University – sequence: 2 givenname: Mohd Quasim surname: Khan fullname: Khan, Mohd Quasim email: quasimkhanmohd90@gmail.com organization: Department of Chemistry, M.M.D.C, M.J.P. Rohilkhand University – sequence: 3 givenname: Ali surname: Alsulmi fullname: Alsulmi, Ali organization: Department of Chemistry, College of Science, King Saud University – sequence: 4 givenname: Tae Hwan surname: Oh fullname: Oh, Tae Hwan email: taehwanoh@ynu.ac.kr organization: School of Chemical Engineering, Yeungnam University |
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Snippet | We report the synthesis of phosphorus (P)-doped reduced graphene oxide (P-rGO) using a hydrothermal method at 180°C for 7 h. Furthermore, the amorphous nature... We report the synthesis of phosphorus (P)-doped reduced graphene oxide (P-rGO) using a hydrothermal method at 180°C for 7 h. Furthermore, the amorphous nature... |
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SourceType | Aggregation Database Publisher |
StartPage | 6863 |
SubjectTerms | Characterization and Evaluation of Materials Chemistry and Materials Science Dye-sensitized solar cells Electrode materials Electrodes Electronics and Microelectronics Energy conversion efficiency Graphene Instrumentation Materials Science Optical and Electronic Materials Original Research Article Photoelectric effect Photoelectrons Solid State Physics Spectrum analysis Surface structure Synthesis X ray powder diffraction X-ray spectroscopy |
Title | Design and Fabrication of Pt-Free Counter Electrode for Photovoltaic Application |
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