HEIndividual fellowship2024–2026

SpiM · Synthesis of pi-Magnetic Molecular Materials

Horizon Europe — Marie Skłodowska-Curie Actions

Duration
2024-06-01 → 2026-05-31
EU contribution
€211,755
Participants
1
Scheme
HORIZON-TMA-MSCA-PF-EF

Lines connect the coordinator with its partners.

Results in brief

Synthesis of pi-Magnetic Molecular Materials

Magnetic materials are fundamental to technologies today and the future. Although usually associated with bulk metals, single molecular magnets based on transition metals have shown promise in emerging fields such as nanoelectronics. Recently, fundamental studies have uncovered the magnetic properties of carbon-based materials, i.e. with open shell structure or unpaired pi-electron dubbed as pi-radicals. However, such studies are usually either in a purely theoretical point of view or under ultra-high vacuum conditions and cryogenic temperatures. These are the main limits to realizing new magnetic carbon-based materials. Thus, this project (Synthesis of π-Magnetic Molecular Materials, SpiM) aims to: to contribute new π-magnetic molecules realizable in bulk by solution-phase methods; and (2) to explore their incorporation into functional molecular architectures and devices. Successful achievement of the objectives will introduce novel magnetic materials for future technologies. Such carbon-based materials could be critical in the shift from of organic materials from their inorganic materials, which may face environmental, socio-political, and economic problems related to their mining.

Data: CORDIS, © European Union

Project objective

On-surface generation and characterization under ultra-high vacuum (UHV) of π-conjugated graphenic frameworks that have open-shell electronic structure, π-magnetism, have been an advanced and active area of research since the successful nanoscale fabrication of triangulene in 2017. However, the stability afforded by on-surfae techniques under UHV carries its own bane: products remain on the solid substrate support, limiting yields, and thus their incorporation to more complex functional molecules and devices. Synthesis of pi-magnetic molecular materials (SpiM) aims (1) to contribute new π-magnetic molecules realizable in bulk by solution-phase methods and; (2) to explore their incorporation into functional molecular architectures and devices. SpiM will take advantage of chemistries of closed-shell polycyclic aromatic hydrocarbons, that use bulky functional groups for solubilization—the same functional groups which protect otherwise reactive π-radicals in these open-shell structures—in order to realize π-magnetic molecules in bulk outside the UHV. This would facilitate their incorporation into stimuli-responsive molecular materials (SRMs), complex functional molecular architectures that could allow modulation of spin, or magnetic state, by an external stimuli. Lastly, SpiM will explore their feasibility for OLEDs and Faraday rotators, applications hitherto unexplored in nanoscale on-surface studies under UHV. SpiM will use a combination of synthetic chemistries from different fields; chemical, photophysical, and electrochemical characterization techniques; and device testing/measurement, in order to realize the immense potential of these molecules for applications outside the UHV chamber.

Original text from CORDIS.

Participants

  • SORBONNE UNIVERSITE · ParisCoordinatorFrance

Links

Data: CORDIS, © European Union