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Molecular Rotor Functionalized with a Photoresponsive Brake.

Ryosuke AsatoColin J MartinSeifallah AbidYohan GisbertFumio AsanomaTakuya NakashimaClaire KammererTsuyoshi KawaiGwénaël Rapenne
Published in: Inorganic chemistry (2021)
A molecular motor that has been previously shown to rotate when fueled by electrons through a scanning tunneling microscope tip has been functionalized with a terarylene photochrome fragment on its rotating subunit. Photoisomerization has been performed under UV irradiation. Variable-temperature 1H NMR and UV-vis studies demonstrate the rotational motion and its braking action after photoisomerization. The braking action can be reversed by thermal heating. Once the rigid and planar closed form is obtained, the rotation is effectively slowed at lower temperature, making this new rotor a potential motor with an independent response to electrons and light.
Keyphrases
  • high resolution
  • quantum dots
  • magnetic resonance
  • molecularly imprinted
  • solid state
  • radiation therapy
  • human health
  • climate change
  • high speed