H2020Doctoral network2021–2025

NanED · Electron Nanocrystallography

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2021-03-01 → 2025-10-31
EU contribution
€3,712,746
Participants
8
Scheme
MSCA-ITN

Lines connect the coordinator with its partners.

Results in brief

Electron Nanocrystallography

The properties of each material, organic or inorganic, depend on how the atoms are arranged on its structure. A wide class of materials we use in everyday life is in crystalline form so their structure is ordered, and their atomic arrangement can be described in great detail. However, very often the materials we encounter crystallize in grains with sizes 10 or 100 times smaller than the diameter of a human hair. This happens, either because this is the only way to synthesize them, or because we made them small, since it is their “nano” size that gives them extraordinary properties. When the crystals are so small the determination of their structure changes from a routine characterization to an extremely challenging problem that requires new science to be solved. The standard way in which we determine the crystal structure is based on observing how a crystal deflects an x-ray radiation impinging on it: the so called diffraction phenomena. If the crystal size falls in the ranges discussed above, the scattering of x-ray radiation is too weak, and a new radiation probe must be found. Our project proposed to use electrons as “the radiation” for investigating the crystal structure instead of x-ray. The electrons interact stronger with matter than x-ray, therefore we have detectable diffraction signals from crystals as small as a few hundreds of nanometers. Furthermore, such an experiment can be done in existing instruments: the transmission electron microscopes. The aim of NanED has been to train a new generation of young electron crystallographers that will spread this novel technique in Europe and beyond and at the same time to develop and apply electron diffraction to any kind of crystalline material, going from inorganic synthetic products to pharmaceutical compounds, from nanoparticles to proteins. The characterization capability of nanocrystals that NanED has set up is going to impact in the society in terms of understanding new material functions and properties. We have been able to understand which are the products of chemical syntheses that were neglected for their polycrystalline yield. We have discovered new polytypes of pharmaceutical compounds that were previously ignored because they were elusive to all the available characterization methods. We demonstrated to be capable of determining the structure of unknown proteins bound to a drug, that up to now were studied in this form since they could only crystallize in nanocrystalline forms and are too small for standard cryo-EM imaging.

Data: CORDIS, © European Union

Project objective

The atomic structure determination of inorganic, organic and macromolecular compounds is a hard challenge anytime the crystal size falls below the micron range, becoming no more suitable for single-crystal x-ray diffraction. Still, a number of chemicals with valuable commercial and medical implications can be synthesized only as nanocrystals or show phase/polymorphic transitions during crystal growth. The development of more efficient tools able to disclose the nature of nanocrystalline materials is therefore a hot and transversal topic that links materials science, physics of diffraction, new instrument engineering, chemical production and pharmacology.Electron diffraction (ED) allows extracting structure information from single nanometric crystals. ED experienced a tremendous boost after the development of 3D routines for data collection, up to be enlisted among the main breakthroughs in Science. However, the development of 3D ED is still limited to few laboratories and is slowed by the lack of dedicated instrumentation.NanED aims to form a new generation of electron crystallographers, able to master and develop 3D ED techniques in an interdisciplinary and interconnected network, where competences and know-how of usually distant scientific sectors are shared and merged. NanED will gather all European scientists hitherto active in 3D ED development and a pool of large and small companies interested in instrument development and material or pharmaceutical production.NanED will deliver portable procedures for sample preparation, data collection and data analysis, suitable for the successful application of 3D ED to all kinds of compounds. NanED will also establish a new standard of crystallographic training, closer to nowadays industrial needs. Finally, NanED will favor the dissemination of 3D ED in academic and industrial laboratories, pushing Europe to be the leader for nanomaterial characterisation and development, with a noticeable and global economic impact.

Original text from CORDIS.

Participants

  • FONDAZIONE ISTITUTO ITALIANO DI TECNOLOGIA · GenovaCoordinatorItaly
  • CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRS · ParisFrance
  • FYZIKALNI USTAV AV CR, VVI · PRAHA 8Czechia
  • JOHANNES GUTENBERG-UNIVERSITAT MAINZ · MainzGermany
  • STOCKHOLMS UNIVERSITET · StockholmSweden
  • UNIVERSITAET ULM · UlmGermany
  • UNIVERSITAT BASEL · BaselSwitzerland
  • UNIVERSITEIT ANTWERPEN · AntwerpenBelgium

Links

Data: CORDIS, © European Union