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Inkjet assisted fabrication of planar biocompatible memristors.

Georgii A IllarionovDenis S KolchanovOleg A KuchurMikhail V ZhukovEkaterina SergeevaVladimir V KrishtopAlexandr V VinogradovMaxim I Morozov
Published in: RSC advances (2019)
In this study we address a novel design of a planar memristor and investigate its biocompatibility. An experimental prototype of the proposed memristor assembly has been manufactured using a hybrid nanofabrication method, combining sputtering of electrodes, patterning the insulating trenches, and filling them with a memristive substance. To pattern the insulating trenches, we have examined two nanofabrication techniques employing either a focused ion beam or a cantilever tip of an atomic force microscope. Inkjet printing has been used to fill the trenches with the functional titania ink. The experimental prototypes have qualitatively demonstrated memristive current-voltage behavior, as well as high biocompatibility.
Keyphrases
  • tissue engineering
  • ionic liquid
  • reduced graphene oxide
  • drug delivery
  • solid state