4.6 Article

Based on Ultrathin PEDOT:PSS/c-Ge Solar Cells Design and Their Photoelectric Performance

期刊

COATINGS
卷 11, 期 7, 页码 -

出版社

MDPI
DOI: 10.3390/coatings11070748

关键词

Ge solar cells; PEDOT; PSS; surface plasmon effect; light trapping; FDTD

资金

  1. National Natural Science Foundation of China [51606158, 11604311, 61705204, 21506257]
  2. Scientific Research Fund of Si Chuan Provincial Science and Technology Department [2020YJ0137, 2020YFG0467, 2021JDRC0019]
  3. Key Laboratory for Metallurgical Equipment and Control Technology of Ministry of Education in Wuhan University of Science and Technology [MECOF2020B02]
  4. Postgraduate Innovation Fund Project by Southwest University of Science and Technology [18ycx034]
  5. Southwest University of Science and Technology Students Innovation Fund project [CX20-031]
  6. Southwest University of Science and Technology [JZ20-025]

向作者/读者索取更多资源

The optical properties of PEDOT:PSS/c-Ge hybrid solar cells based on octagon germanium nanoparticles were analyzed to achieve high broadband absorption. Changing the structural parameters of nanoparticles improved light absorption to over 90%. By placing PEDOT:PSS on top of O-GNPs and adding PMMA, the solar cell conversion efficiency and electrical characteristics were further enhanced.
In recent years, nanostructures have improved the performance of solar cells and are regarded as the most promising microstructures. The optical properties of PEDOT:PSS/c-Ge hybrid solar cells (HSCs) based on the octagon germanium nanoparticles (O-GNPs) were numerically analyzed using the finite-difference time-domain (FDTD) method. The optimal structure of the hybrid solar cell is determined by changing the thickness of the organic layer and structural parameters of nanoparticles to enhance the optical absorption and eventually achieve high broadband absorption. By changing the structure parameter of O-GNPs, we studied its effect on solar cells. The optimization of geometric parameters is based on maximum absorption. The light absorption of our optimized HSCs is basically above 90% between 200 and 1500 nm. PEDOT:PSS is placed on top of O-GNPs to transmit the holes better, allowing O-GNPs to capture a lot of photons, to increase absorbance value properties in the AM1.5 solar spectral irradiated region. The transmittance is increased by adding poly-methyl methacrylate (PMMA). At the same time, the electrical characteristics of Ge solar cells were simulated by DEVICE, and short-circuit current (Jsc), open-circuit voltage (Voc), maximum power (Pmax), filling coefficient (FF) and photoelectric conversion efficiency (PCE) were obtained. According to the optimization results after adjusting the structural parameters, the maximum short-circuit current is 44.32 mA/cm(2); PCE is 7.84 mW/cm(2); FF is 69%. The results show that the O-GNPs have a good light trapping effect, and the structure design has great potential for the absorption of HSCs; it is believed that the conversion efficiency will be further improved through further research.

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