Flexible Polymer Solar Cells with High Efficiency and Good Mechanical Stability

  • Kathir, I.; 
  • Shinde, Santaji Krishna; 
  • Parswajinan, C.; 
  • Hanumanthakari, Sudheer; 
  • Loganathan, K.; 
  • 외 4명
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초록

Single-junction polymer solar cells have demonstrated exceptional power conversion efficiency. Interlayer adhesion will be critical in building flexible polymer solar cells since inorganic conveyance layers would surely break. Aluminium-doped zinc oxide modified by polydopamine has emerged as a viable electron transportation layer in polymer solar cells, enhancing mechanical qualities by offering a high degree of flexibility and adhesion to the active layer. Power conversion efficiency of 12.7% is achieved in nonfullerene polymer solar cells built on PBDB-T2F:IT-4F with aluminium-doped zinc oxide 1.5% polydopamine electron transporting layer. Furthermore, the device based on Ag-mesh wire-wound electrodes has a power conversion efficiency of 11.5% and retains more than 90% of original power conversion efficiency afterward 1500 cycles of bending. For implantable and adaptable polymer solar cells for wide areas, roll-to-roll fabrication of inorganic electron transport layers is advantageous because of their mechanical resilience and thickness insensitivity.

키워드

ORGANIC PHOTOVOLTAICS; DOPED ZNO; NANOWIRE; LAYER; DESIGN
제목
Flexible Polymer Solar Cells with High Efficiency and Good Mechanical Stability
저자
Kathir, I.; Shinde, Santaji Krishna; Parswajinan, C.; Hanumanthakari, Sudheer; Loganathan, K.; Madhavarao, S.; Seikh, A. H.; Siddique, M. H.; Ganesan, Manikandan
DOI
10.1155/2022/4931922
발행일
2022-09-22
유형
Article
저널명
International Journal of Photoenergy
권
2022