Neutron spectroscopy study of the diffusivity of hydrogen in MoS

The diffusion of hydrogen adsorbed inside layered MoS 2 crystals has been studied by means of quasi-elastic neutron scattering, neutron spin-echo spectroscopy, nuclear reaction analysis, and X-ray photoelectron spectroscopy. The neutron time-of-flight and neutron spin-echo measurements demonstrate f...

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Veröffentlicht in:Physical chemistry chemical physics : PCCP 2021-04, Vol.23 (13), p.7961-7973
Hauptverfasser: Kuznetsov, Vitalii, Lohstroh, Wiebke, Rogalla, Detlef, Becker, Hans-Werner, Strunskus, Thomas, Nefedov, Alexei, Kovacevic, Eva, Traeger, Franziska, Fouquet, Peter
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Zusammenfassung:The diffusion of hydrogen adsorbed inside layered MoS 2 crystals has been studied by means of quasi-elastic neutron scattering, neutron spin-echo spectroscopy, nuclear reaction analysis, and X-ray photoelectron spectroscopy. The neutron time-of-flight and neutron spin-echo measurements demonstrate fast diffusion of hydrogen molecules parallel to the basal planes of the two dimensional crystal planes. At room temperature and above, this intra-layer diffusion is of a similar speed to the surface diffusion that has been observed in earlier studies for hydrogen atoms on Pt surfaces. A significantly slower hydrogen diffusion was observed perpendicular to the basal planes using nuclear reaction analysis. Neutron time-of-flight and spin-echo spectroscopy reveal a fast diffusion of hydrogen molecules parallel to the MoS 2 basal planes.
ISSN:1463-9076
1463-9084
DOI:10.1039/d0cp05136e