Chemically synthesized poly(3,4-ethylenedioxythiophene) conducting polymer as a robust electrocatalyst for highly efficient dye-sensitized solar cells
  • Masud, Md.
  • Aftabuzzaman, Md.
  • Zhou, Haoran
  • Kim, Saehyun
  • Yi, Jaekyung
  • 외 3명
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6

초록

Chemically synthesized PEDOT (poly(3,4-ethylenedioxythiophene)) nanomaterials, with various nanostructured morphologies as well as different intrinsic electrical conductivities and crystallinities, were compared as electrocatalysts for Co(iii) reduction in dye-sensitized solar cells (DSSCs). Electrochemical parameters, charge transfer resistance toward the electrode/electrolyte interface, catalytic activity for Co(iii)-reduction, and diffusion of cobalt redox species greatly depend on the morphology, crystallinity, and intrinsic electrical conductivity of the chemically synthesized PEDOTs and optimization of the fabrication procedure for counter electrodes. The PEDOT counter electrode, fabricated by spin coating a DMSO-dispersed PEDOT solution with an ordered 1D structure and nanosized fibers averaging 70 nm in diameter and an electrical conductivity of similar to 16 S cm-1, exhibits the lowest charge transfer resistance, highest diffusion for a cobalt redox mediator and superior electrocatalytic performance compared to a traditional Pt-counter electrode. The photovoltaic performance of the DSSC using chemically synthesized PEDOT exceeds that of a Pt-electrode device because of the enhanced current density, which is directly related to the superior electrocatalytic ability of PEDOT for Co(iii)-reduction. This simple spin-coated counter electrode prepared using cheap and scalable chemically synthesized PEDOT can be a potential alternative to the expensive Pt-counter electrode for cobalt and other redox electrolytes in DSSCs and various flexible electronic devices. PEDOT counter electrodes, optimized via spin-coating a DMSO-dispersed solution from scalable synthesis, were evaluated for cobalt reduction in dye-sensitized solar cells. PEDOT was a superior electrocatalyst compared to Pt.

키워드

CobaltDimethyl SulfoxideCatalyst ActivityCharge TransferCobalt CompoundsConducting PolymersConjugated PolymersCrystallinityElectric ConductivityElectrocatalystsElectrochemical ElectrodesPlastic CoatingsPolypyrrolesReductionSpinning (fibers)% ReductionsCharge Transfer ResistanceCounter ElectrodesCristallinityDye- Sensitized Solar CellsElectrical ConductivityElectrochemical ParametersEthylenedioxythiophenesNanostructured MorphologySynthesisedDye-sensitized Solar CellsCobaltDimethyl SulfoxideElectrolyteNanomaterialPolymerArticleCatalysisControlled StudyCounter ElectrodeCurrent DensityDiffusionElectric ConductivityElectrodePharmaceuticsPlatinum ElectrodeSolar CellSpin CoatingPERFORMANCE COUNTER ELECTRODESNANOPARTICLESNANOFIBERSPLATINUM
제목
Chemically synthesized poly(3,4-ethylenedioxythiophene) conducting polymer as a robust electrocatalyst for highly efficient dye-sensitized solar cells
저자
Masud, Md.Aftabuzzaman, Md.Zhou, HaoranKim, SaehyunYi, JaekyungPark, Sarah S.Kim, Youn SooKim, Hwan Kyu
DOI
10.1039/d4nr00949e
발행일
2024-07
유형
Article
저널명
Nanoscale
16
29
페이지
13874 ~ 13884