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High Conductivity, Semiconducting, and Metallic PEDOT:PSS Electrode for All-Plastic Solar Cells. | LitMetric

AI Article Synopsis

  • A new plastic electrode made from PEDOT:PSS on a PES substrate shows excellent electrical conductivity (over 2673 S/cm) and high light transmittance (over 90% at 550 nm) after treatment with sulfuric acid.
  • The arrangement of PEDOT molecules contributes to its unique semiconducting and metallic properties, confirmed through X-ray diffraction and temperature-dependent measurements.
  • Plastic solar cells using this HC-PEDOT:PSS electrode exhibit promising performance, with a power conversion efficiency of up to 12.8%, indicating its potential as a viable alternative for all-plastic and ITO-free solar cells.

Article Abstract

Plastic electrodes are desirable for the rapid development of flexible organic electronics. In this article, a plastic electrode has been prepared by employing traditional conducting polymer poly(3,4-ethylenedioxythiophene):poly(styrene sulfonate) (PEDOT:PSS) and plastic substrate polyethersulfone (PES). The completed electrode (Denote as HC-PEDOT:PSS) treated by 80% concentrated sulfuric acid (HSO) possesses a high electrical conductivity of over 2673 S/cm and a high transmittance of over 90% at 550 nm. The high conductivity is attributed to the regular arrangement of PEDOT molecules, which has been proved by the X-ray diffraction characterization. Temperature-dependent conductivity measurement reveals that the HC-PEDOT:PSS possesses both semiconducting and metallic properties. The binding force and effects between the PEDOT and PEI are investigated in detail. All plastic solar cells with a classical device structure of PES/HC-PEDOT:PSS/PEI/P3HT:ICBA/EG-PEDOT:PSS show a PCE of 4.05%. The ITO-free device with a structure of Glass/HC-PEDOT:PSS/Al4083/PM6:Y6/PDINO/Ag delivers an open-circuit voltage () of 0.81 V, short-circuit current ( ) of 23.5 mA/cm, fill factor (FF) of 0.67 and a moderate power conversion efficiency (PCE) of 12.8%. The above results demonstrate the HC-PEDOT:PSS electrode is a promising candidate for all-plastic solar cells and ITO-free organic solar cells.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10059736PMC
http://dx.doi.org/10.3390/molecules28062836DOI Listing

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