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Memristive TiO2: Synthesis, Technologies, and Applications.

Georgii A Illarionov1, Sofia M Morozova1, Vladimir V Chrishtop1

  • 1Laboratory of Solution Chemistry of Advanced Materials and Technologies, ITMO University, St. Petersburg, Russia.

Frontiers in Chemistry
|November 2, 2020
PubMed
Summary

Titanium dioxide (TiO2) memristors show promise for memory and computing but face processing and comprehension challenges. This review covers TiO2 synthesis, fabrication, and applications, highlighting key advances and hurdles.

Keywords:
TiO2electronic oxidesmemristornanoparticlesneuromorphic

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Area of Science:

  • Materials Science
  • Nanotechnology
  • Electrical Engineering

Background:

  • Titanium dioxide (TiO2) is a key material in resistive switching for applications like random-access memory and neuromorphic computing.
  • Current TiO2 applications face technological challenges and a lack of fundamental understanding.
  • Memristive properties of TiO2 thin films are highly sensitive to processing methods.

Purpose of the Study:

  • To summarize key achievements, recent advances, and challenges in memristive TiO2.
  • To provide an overview of TiO2-based memristive device applications.
  • To discuss synthesis, fabrication, post-fabrication processing, and functional properties of TiO2.

Main Methods:

  • Literature review and synthesis of existing research on TiO2 memristors.
  • Analysis of processing methods including synthesis, fabrication, and post-fabrication treatments.
  • Overview of application areas and functional properties.

Main Results:

  • TiO2 is widely used but requires further research for technological maturity.
  • Processing methods significantly impact TiO2 memristive properties.
  • Significant progress has been made, but fundamental comprehension and technological challenges remain.

Conclusions:

  • Memristive TiO2 holds great potential for advanced electronic applications.
  • Continued research into synthesis, fabrication, and fundamental properties is crucial for overcoming current challenges.
  • Further development is needed to fully realize the potential of TiO2-based memristive devices.