Phd Student- Nanomaterials for Advanced Memory and Computing (Barcelona)

Phd Student- Nanomaterials for Advanced Memory and Computing (Barcelona)

09 jun
|
Icn2
|
Barcelona

09 jun

Icn2

Barcelona

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**PhD position funded by AEI agency (Spanish Government)**

**TOPIC**: Magneto-ionics for information technologies: secure and energy-efficient memories and advanced computing A

The position is in the framework of the project "Enabling magneto-ionics for information technologies: secure and energy-efficient data storage and advanced computing".

This is a very multidisciplinary project which will be developed in close collaboration with the Catalan Institute of Nanoscience and Nanotechnology (ICN2), where we are now establishing a new research group on "Nanomaterials for advanced memory and computing".

The project mainly tackles the growth and characterization of innovative magneto-ionic nanomaterials (where magnetic properties are tuned through voltage-driven ion migration) with applicability in (i) energy-efficient and secure memory devices and (ii) advanced braininspired computing and anti-counterfeiting technologies.

**Duration**: 4 years funded through an FPI Fellowship.

**Starting period**: February 2026.
- Growth of the magnetic heterostructures.



- Structural/compositional characterization, including synchrotron techniques.
- Magnetic and magnetoelectric characterization.
- Integration of materials into devices.
- Degree in Physics, Materials Science, Nanoscience, or similar.
- Master + Bachelor degrees (300 ETCS in total) or Bachelor degree (300 ETCS in total).
- Knowledge in nanomaterials and nanoscience.
- Knowledge of experimental techniques (sputtering, XRD, TEM, SEM, magnetometry, etc.).
- Outstanding CV and, more importantly, a high degree of ambition and motivation, and with good personal qualities to work in our Team.
- Good level in English.

**About the Gnm3 group**:

- and nano-objects, mesoporous and nanoporous structures, electrodeposited thin films, bulk metallic glasses, and bulk nanocomposites. More recently, we have been exploring materials in which magnetism can be tuned by electrical voltage, with the aim of developing neuromorphic computing technologies.

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📌 Phd Student- Nanomaterials for Advanced Memory and Computing (Barcelona)
🏢 Icn2
📍 Barcelona

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