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Janus Graphene Liquid Crystalline Fiber with Tunable Properties Enabled by Ultrafast Flash Reduction

  • In Ho Kim
  • , Tae Hong Im
  • , Han Eol Lee
  • , Ji Soo Jang
  • , Hee Seung Wang
  • , Gil Yong Lee
  • , Il Doo Kim
  • , Keon Jae Lee*
  • , Sang Ouk Kim
  • *Corresponding author for this work
  • Korea Advanced Institute of Science and Technology

Research output: Contribution to journalJournal articlepeer-review

Abstract

Flash photothermal treatment via Xenon lamp with a broad wavelength spectrum can effectively remove oxygen functionalities and restore sp2 domains at graphitic carbon materials. The chemical composition and relevant structure formation of flash reduced graphene oxide liquid crystal (GOLC) fibers are investigated in accordance with flash irradiation conditions. Owing to the spatial controllability of reduction level via anisotropic flash irradiation, the mechanical properties and electrical conductivity of graphene fibers can be delicately counterbalanced to attain desired properties. High sensitivity humidity sensors can be fabricated from the flash reduced fibers demonstrating notably higher sensitivity over the thermally reduced counterparts. This ultrafast flash reduction holds great promise for multidimensional macroscopic GO based structures, enabling a wide range of potential applications, including textile electronics and wearable sensors.

Original languageEnglish
Article number1901529
JournalSmall
Volume15
Issue number48
DOIs
StatePublished - 2019.11.1

Keywords

  • fibers
  • flash light
  • graphene oxide
  • humidity sensors
  • photothermal reduction

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