Efficient Thick-Film Polymer Solar Cells with Enhanced Fill Factors via Increased Fullerene Loading

Abstract

Developing effective methods to make efficient bulk-heterojunction polymer solar cells at roll-to-roll relevant active layer thickness is of significant importance. We investigate the effect of fullerene content in polymer:fullerene blends on the fill factor (FF) and on the performance of thick-film solar cells for four different donor polymers PTB7-Th, PDPP-TPT, BDT-FBT-2T, and poly[5,5-bis(2-butyloctyl)- (2,2-bithiophene)-4,4-dicarboxylate-alt-5,5-2,2-bithiophene] (PDCBT). At a few hundreds of nanometers thickness, increased FFs are observed in all cases andimproved overall device performances are obtained except for PDCBT upon increasing fullerene content in blend films. This fullerene content effect was studied in more detail by electrical and morphological characterization. The results suggest enhanced electron mobility and suppressed bimolecular recombination upon increasing fullerene content in thick polymer:fullerene blend films, which are the result of larger fullerene aggregates and improved interconnectivity of the fullerene phases that provide continuous percolating pathways for electron transport in thick films. These findings are important because an effective and straightforward method that enables fabricating efficient thick-film polymer solar cells is desirable for large-scale manufacturing via roll-to-roll processing and for multijunction devices.

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Document Details

Document Type
Technical Report
Publication Date
Feb 25, 2019
Accession Number
AD1104868

Entities

People

  • Chunhui Duan
  • Fallon J. Colberts
  • Harald Ade
  • Koen H. Hendriks
  • Long Ye
  • Martijn M. Wienk
  • Omar Awartani
  • Renee A. Janssen
  • Shuting Pang
  • Zhengxing Peng

Organizations

  • North Carolina State University

Tags

Communities of Interest

  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Band Gaps
  • Charge Carriers
  • Conjugated Polymers
  • Electron Mobility
  • Electrons
  • Films
  • Light Sources
  • Materials
  • Molecules
  • Organic Solar Cells
  • Polymer Solar Cells
  • Quantum Efficiency
  • Scattering
  • Small Molecules
  • Solar Cells
  • Thick Films
  • United States

Fields of Study

  • Materials science

Readers

  • Nanocomposite Materials Science
  • Solar Photovoltaics and Thermoelectric Devices.
  • Thin Film Deposition Science.

Technology Areas

  • Microelectronics
  • Microelectronics - Graphene