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Nature-inspired light-harvesting liquid crystalline porphyrins for organic photovoltaics

  • Lanfang Li
  • , Shin Woong Kang
  • , John Harden
  • , Qingjiang Sun
  • , Xiaoli Zhou
  • , Liming Dai
  • , Antal Jakli
  • , Satyendra Kumar
  • , Quan Li
  • Kent State University
  • University of Dayton

Research output: Contribution to journalArticlepeer-review

101 Scopus citations

Abstract

A new class of nanoscale light-harvesting discotic liquid crystalline porphyrins, with the same basic structure of the best photoreceptor in nature (chlorophyll), was synthesized. These materials can be exceptionally aligned into a highly ordered architecture in which the columns formed by intermolecular π-π stacking are spontaneously perpendicular to the substrate. The homeotropic alignment, well confirmed by synchrotron X-ray diffraction, could not only provide the most efficient pathway for hole conduction along the columnar axis crossing the device thickness, but also offer the largest area to the incident light for optimized light harvesting. Their preliminary photocurrent generation and photovoltaic performances were also demonstrated. The results provide new and efficient pathways to the development of organic photovoltaics by using homeotropically aligned liquid crystal thin films.

Original languageEnglish
Pages (from-to)233-239
Number of pages7
JournalLiquid Crystals
Volume35
Issue number3
DOIs
StatePublished - Mar 2008

Keywords

  • Hexagonal phase
  • Homeotropic alignment
  • Light-harvesting porphyrin
  • Nature-inspired liquid crystals
  • Photovoltaics

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