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Modulations of the work function and morphology of a single MoS 2 nanotube by charge injection.

Maja RemškarJanez JelencNikolai CzepurnyiMatjaž MalokLuka PirkerRupert SchreinerAndreas K Hüttel
Published in: Nanoscale advances (2024)
Both the miniaturization of transistor components and the ongoing investigation of material systems with potential for quantum information processing have significantly increased current interest of researchers in semiconducting inorganic nanotubes. Here we report on an additional outstanding aspect of these nanostructures, namely the intrinsic coupling of electronic and mechanical properties. We observe electronic and morphology changes in a single MoS 2 nanotube, exposed to charge injections by means of an atomic-force-microscopy tip. An elliptic deformation of the nanotube and helical twisting of the nanotube are visible, consistent with the reverse piezoelectric effect. Work-function changes are found to be dependent on the polarity of the injected carriers. An unexpected long-term persistence of the shape deformations is observed and explained with accumulation of structural defects and the resultant strain, which could cause a memory-like charge confinement and a long lasting modulation of the work function.
Keyphrases
  • atomic force microscopy
  • room temperature
  • quantum dots
  • high speed
  • solar cells
  • ultrasound guided
  • gold nanoparticles
  • water soluble