This work provides an up-to-date overview of recent developments in neutron spectroscopic techniques and associated computational tools to interrogate the structural properties and dynamical behavior of complex and disordered materials, with a focus on those of a soft and polymeric nature. These have and continue to pave the way for new scientific opportunities simply thought unthinkable not so long ago, and have particularly benefited from advances in high-resolution, broadband techniques spanning energy transfers from the meV to the eV. Topical areas include the identification and robust assignment of low-energy modes underpinning functionality in soft solids and supramolecular frameworks, or the quantification in the laboratory of hitherto unexplored nuclear quantum effects dictating thermodynamic properties. In addition to novel classes of materials, we also discuss recent discoveries around water and its phase diagram, which continue to surprise us. All throughout, emphasis is placed on linking these ongoing and exciting experimental and computational developments to specific scientific questions in the context of the discovery of new materials for sustainable technologies.

Drużbicki, K., Gaboardi, M., Fernandez-Alonso, F. (2021). Dynamics & Spectroscopy with Neutrons—Recent Developments & Emerging Opportunities. POLYMERS, 13(9) [10.3390/polym13091440].

Dynamics & Spectroscopy with Neutrons—Recent Developments & Emerging Opportunities

Mattia Gaboardi;
2021-01-01

Abstract

This work provides an up-to-date overview of recent developments in neutron spectroscopic techniques and associated computational tools to interrogate the structural properties and dynamical behavior of complex and disordered materials, with a focus on those of a soft and polymeric nature. These have and continue to pave the way for new scientific opportunities simply thought unthinkable not so long ago, and have particularly benefited from advances in high-resolution, broadband techniques spanning energy transfers from the meV to the eV. Topical areas include the identification and robust assignment of low-energy modes underpinning functionality in soft solids and supramolecular frameworks, or the quantification in the laboratory of hitherto unexplored nuclear quantum effects dictating thermodynamic properties. In addition to novel classes of materials, we also discuss recent discoveries around water and its phase diagram, which continue to surprise us. All throughout, emphasis is placed on linking these ongoing and exciting experimental and computational developments to specific scientific questions in the context of the discovery of new materials for sustainable technologies.
2021
Pubblicato
Rilevanza internazionale
Review
Esperti anonimi
Settore CHIM/05 - Scienza e Tecnologia dei Materiali Polimerici
Settore CHEM-05/A - Chimica organica
Settore CHEM-04/A - Chimica industriale
Settore CHEM-02/A - Chimica fisica
English
Con Impact Factor ISI
computational materials modeling
ice
neutron spectroscopy
nuclear quantum effects
plastic crystals
polymers
soft matter
supramolecular frameworks
sustainable materials
water
Drużbicki, K., Gaboardi, M., Fernandez-Alonso, F. (2021). Dynamics & Spectroscopy with Neutrons—Recent Developments & Emerging Opportunities. POLYMERS, 13(9) [10.3390/polym13091440].
Drużbicki, K; Gaboardi, M; Fernandez-Alonso, F
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/396884
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