Photo-Iontronics

Research Interests

Exploring π-powered devices: where light, ions, and electrons meet

Mixed Electronic-Ionic Semiconductors

  • Investigate halide perovskites and perovskite-inspired materials that combine electronic and ionic charge transport for adaptive and multifunctional device operation.
  • Employ small-perturbation opto-electrical spectroscopy to understand electronic-ionic coupling and charge transport dynamics.

Brain-Inspired Electronics

  • Develop two-terminal and three-terminal memristive devices based on mixed electronic-ionic semiconductors.
  • Explore novel device architectures and operating principles for adaptive and brain-inspired electronics.
  • Enable energy-efficient neuromorphic and in-sensor computing through the integration of sensing, memory, and processing.

Bifunctional Energy Devices

  • Exploit electronic, ionic, and optical properties to simultaneously harvest and store solar energy.
  • Develop sustainable energy solutions for autonomous electronics, intelligent sensors, and edge computing applications.

Group Members

Group MembersLTI

Information on Bachelor- and Master Theses

If you are interested in pursuing a bachelor or master thesis in neuromorphic computing hardware, please contact me.