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Precise Placement of Microbubble Templates at Single Entity Resolution.

Ji Tae KimJaeyeon PyoSeung Kwon SeolJung Ho Je
Published in: ACS macro letters (2018)
Microbubbles have been used as a soft template to produce hollow structures for diverse applications in chemistry, materials science, and biomedicine. It is a challenge, however, to control their size and position at single-entity level. We report on an on-demand method to produce and place a single microbubble with programmed size and position. The method exploits scanning an electrolyte-filled micropipette to place a hydrogen (H 2 ) bubble, generated by water electrolysis, on the desired position. The bubble growth is self-limited after the bubble size fits to the pipet aperture, yielding well-controlled bubble size. The bubble growth dynamics within the pipet is successfully investigated by a methodology that combines phase-contrast X-ray imaging and electric-current measurement. We show that the microbubbles, accurately controlled in size and position, can be used for the fabrication of various polypyrrole microcontainer arrays. We expect the scanning-pipet strategy could be generalized for manipulating various soft materials at will.
Keyphrases
  • high resolution
  • public health
  • electron microscopy
  • magnetic resonance imaging
  • computed tomography
  • ionic liquid
  • ultrasound guided
  • simultaneous determination
  • high speed