Making Nonconjugated Small-Molecule Organic Radicals Conduct

  • Yu, Ilhwan
  • Jo, Yerin
  • Ko, Jaehyoung
  • Kim, Dae-Yoon
  • Sohn, Daewon
  • 외 1명
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초록

Charge neutral, nonconjugated organic radicals have emerged as extremely useful active materials for solid-state electronic applications. This previous achievement confirmed the potential of radical-based macromolecules in organic electronic devices; however, charge transport in radical molecules has not been studied in great detail from a fundamental perspective. Here we demonstrate the charge transport in a nonconjugated organic small radical, 4-hydroxy-2,2,6,6-tetramethylpiperidin-1-oxyl (h-TEMPO). The chemical component of this radical molecule allows us to form a single crystal via physical vapor deposition (PVD). While the charge transport of this macroscopic open-shell single crystal is rather low, thermal annealing of the well-defined single crystal enables the molecule to have a rapid charge transfer reaction due to the electronic communication of open-shell sites with each other, which results in electrical conductivities greater than 0.05 S m–1. This effort demonstrates a drastically different model than the commonly accepted conjugated polymers or molecules for the creation of next-generation conductors.

키워드

Nonconjugated conductorstable radicalsmall-molecule conductorSingle-crystalPHYSICAL VAPOR GROWTHFIELD-EFFECT-TRANSISTORCHARGE-TRANSPORTTHIN-FILMSEMICONDUCTORSPOLYMERORGANIZATIONPERFORMANCENONVOLATILECRYSTALS
제목
Making Nonconjugated Small-Molecule Organic Radicals Conduct
저자
Yu, IlhwanJo, YerinKo, JaehyoungKim, Dae-YoonSohn, DaewonJoo, Yongho
DOI
10.1021/acs.nanolett.0c01730
발행일
2020-07
유형
Article
저널명
Nano Letters
20
7
페이지
5376 ~ 5382