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Diffusion Driven Transient Hydrogenation in Metal Superhydrides at Extreme Conditions

Authors :
Zhou, Yishan
Fu, Yunhua
Yang, Meng
Osmond, Israel
Jana, Rajesh
Nakagawa, Takeshi
Moulding, Owen
Buhot, Jonathan
Friedemann, Sven
Laniel, Dominique
Meier, Thomas
Publication Year :
2024

Abstract

In recent years, metal hydride research has become one of the driving forces of the high-pressure community, as it is believed to hold the key to superconductivity close to ambient temperature. While numerous novel metal hydride compounds have been reported and extensively investigated for their superconducting properties, little attention has been focused on the atomic and electronic states of hydrogen, the main ingredient in these novel compounds. Here, we present combined $^{1}H$- and $^{139}La$-NMR data on lanthanum superhydrides, $LaH_{x}$, ($x = 10.2 - 11.1$), synthesized after laser heating at pressures above 160 GPa. Strikingly, we found hydrogen to be in a highly diffusive state at room temperature, with diffusion coefficients in the order of $10^{-6}~cm^2s^{-1}$. We found that this diffusive state of hydrogen results in a dynamic de-hydrogenation of the sample over the course of several weeks, approaching a composition similar to its precursor materials. Quantitative measurements demonstrate that the synthesized superhydrides continuously decompose over time. Transport measurements underline this conclusion as superconducting critical temperatures were found to decrease significantly over time as well. This observation sheds new light on formerly unanswered questions on the long-term stability of metal superhydrides.

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2408.13419
Document Type :
Working Paper