This is a page describing data taken during an experiment at the ISIS Neutron and Muon Source. Information about the ISIS Neutron and Muon Source can be found at https://www.isis.stfc.ac.uk.
Proton tunnelling in intramolecular hydrogen bonds: a neutron study
Abstract: Zero-point vibrational energy (ZPE) and nuclear quantum tunnelling (NQT) are nuclear quantum effects (NQEs) that can be measured directly only using neutron Compton scattering (NCS). This proposal?s ambition is to extend the applicability of the NCS technique on VESUVIO into the realm of the local proton quantum dynamics in the intramolecular hydrogen bonds by investigating two benchmark systems for studying hydrogen tunnelling, malonaldehyde (MA) and tropolone (TR), in both hydrogenated and OD-deuterated forms. The ground-state tunnelling splitting in both MA and TR was investigated both experimentally and theoretically, and the main result was that the tunnelling would be partially quenched when the transferring hydrogen is substituted by deuterium. However, in the most recent theoretical study of proton tunnelling in the MA, Roberto Car et al. authors proposed that the correlations of the molecular motions are sufficient to smooth non-Gaussian NMDs associated with deep tunnelling in the one-dimensional double-well model. However, in the TR, this smoothing mechanism may not exist. The proposal aims at checking this hypothesis.
Experimenter: Dr Matthew Krzystyniak
Local Contact: Dr Andrew Seel
Experimenter: Dr Svemir Rudic
Experimenter: Dr Matthias Gutmann
Experimenter: Mr Matei Pascariu
DOI: 10.5286/ISIS.E.RB2310014
ISIS Experiment Number: RB2310014
Part DOI | Instrument | Public release date | Download Link |
---|---|---|---|
10.5286/ISIS.E.RB2310014-1 | VESUVIO | 12 July 2026 | Download |
Publisher: STFC ISIS Neutron and Muon Source
Data format: RAW/Nexus
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Data Citation
The recommended format for citing this dataset in a research
publication is as:
[author], [date], [title], [publisher],
[doi]
For Example:
Dr Matthew Krzystyniak et al; (2023): Proton tunnelling in intramolecular hydrogen bonds: a neutron study, STFC ISIS Neutron and Muon Source, https://doi.org/10.5286/ISIS.E.RB2310014
Data is released under the CC-BY-4.0 license.