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Indirect bipolar electrodeposition of polymers for the controlled design of zinc microswimmers AITranslate

Duhok University;Univ. Bordeaux, CNRS UMR 5255;Univ. Bordeaux, CNRS UMR 5255
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Publisher: Elsevier
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Abstract AITranslate

Self-propelled micro/nanoswimmers performing directional motion are of great potential nowadays in the frame of nanotechnology. The general methods for breaking the symmetry in such systems, which is the essential condition for inducing motion, are template-based, leading to asymmetric objects. In the present work, a new concept using the principles of indirect bipolar electrochemistry is proposed for the design of asymmetric metal/polymer objects. Zinc has been selected as a metal as it allows the subsequent generation of hydrogen gas bubbles when exposed to acidic aqueous solutions. The asymmetric deposition of a polymer shell on the metal leads to propulsion of the particles in a controlled direction. Graphical abstract Download : Download high-res image (133KB) Download : Download full-size image

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DOI:https://doi.org/10.1016/j.apmt.2017.08.005

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Citation Information:

Self-propelled micro/nanoswimmers performing directional motion are of great potential nowadays in the frame of nanotechnology. The general methods for breaking the symmetry in such systems, which is the essential condition for inducing motion, are template-based, leading to asymmetric objects. In the present work, a new concept using the principles of indirect bipolar electrochemistry is proposed for the design of asymmetric metal/polymer objects. Zinc has been selected as a metal as it allows the subsequent generation of hydrogen gas bubbles when exposed to acidic aqueous solutions. The asymmetric deposition of a polymer shell on the metal leads to propulsion of the particles in a controlled direction. Graphical abstract Download : Download high-res image (133KB) Download : Download full-size image

quote

GB/T 7714-2015 [1] Zahra Ali Fattah, Laurent Bouffier, Alexander Kuhn. Applied Materials Today, 2017(9). DOI:10.1016/j.apmt.2017.08.005.
MLA [1] Zahra Ali Fattah, et al., Applied Materials Today, no. 9, 2017, https://doi.org/10.1016/j.apmt.2017.08.005.
APA [1] Zahra Ali Fattah, Laurent Bouffier, & Alexander Kuhn. (2017). Applied Materials Today(9). https://doi.org/10.1016/j.apmt.2017.08.005
IEEE [1] Zahra Ali Fattah, Laurent Bouffier, and Alexander Kuhn, Applied Materials Today, no. 9, 2017, doi: 10.1016/j.apmt.2017.08.005.