Issue 43, 2025

Facile fabrication of an Mxene-supported nano high-entropy hydride unlocking reversible hydrogen storage in Mg(BH4)2

Abstract

Nano-sized high-entropy hydrides (HEH) were synthesized and uniformly loaded onto Ti3C2via a modified mechanochemical method and were further demonstrated as an efficient catalyst for enhancing the hydrogen desorption kinetics and reversibility of Mg(BH4)2. The hydrogen was desorbed from Mg(BH4)2 + 30HEH@Ti3C2 at 83.5 °C, with a complete hydrogen release of 9.84 wt% achieved at 330 °C. The dehydrogenation activation energies were notably reduced to 131 kJ mol−1 and 163 kJ mol−1, which were identified as the primary factors responsible for the enhanced dehydrogenation kinetics. Cyclic tests revealed that HEH@Ti3C2 significantly enhanced the reversible ability of Mg(BH4)2, maintaining a reversibility of 4.6 wt% after the 10th test. This study introduced a new approach to developing high-performance catalysts through the design and fabrication of multi-component catalysts.

Graphical abstract: Facile fabrication of an Mxene-supported nano high-entropy hydride unlocking reversible hydrogen storage in Mg(BH4)2

Supplementary files

Article information

Article type
Communication
Submitted
17 Mar 2025
Accepted
24 Apr 2025
First published
24 Apr 2025

Chem. Commun., 2025,61, 7835-7838

Facile fabrication of an Mxene-supported nano high-entropy hydride unlocking reversible hydrogen storage in Mg(BH4)2

A. Xia, J. Zheng, Z. Ma, C. Wu, C. Li and B. Xiao, Chem. Commun., 2025, 61, 7835 DOI: 10.1039/D5CC01503K

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