ISSN: 1003-6326
CN: 43-1239/TG
CODEN: TNMCEW

Vol. 33    No. 11    November 2023

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Catalytic effect of two-dimensional Mo2TiC2 MXene for tailoring hydrogen storage performance of MgH2
Hao-yu ZHANG1, Gui-bin TIAN1, Fu-ying WU1, Zhen-dong YAO2, Jia-guang ZHENG1, Liu-ting ZHANG1
(1. School of Energy and Power, Jiangsu University of Science and Technology, Zhenjiang 212003, China;
2. School of Materials and Chemistry, China Jiliang University, Hangzhou 310018, China
)
Abstract: Two-dimensional Mo2TiC2 MXene material was synthesized by etching Mo2TiAlC2 and then doped into MgH2 to tailor its hydrogen storage performance. The initial hydrogen desorption temperature of the Mo2TiC2-doped MgH2 was significantly reduced from 330 °C (pristine MgH2) to 187 °C. Isothermal dehydrogenation analysis indicated that the MgH2+9 wt.% Mo2TiC2 composite rapidly discharged 6.4 wt.% H2 at 300 °C within 4 min. For hydrogenation, the dehydrogenated MgH2+9 wt.% Mo2TiC2 uptook 6.5 wt.% H2 at 175 °C within 5 min. By calculation, the activation energy for MgH2+9 wt.% Mo2TiC2 was calculated to be (135.6±1.9) kJ/mol for the desorption reaction and (46.1±0.2) kJ/mol for the absorption reaction. After 20 cycles, 1.0 wt.% H2 was lost for the MgH2+9 wt.% Mo2TiC2 composite. Microstructure analysis results showed that the presence of Mo in Mo2TiC2 enhanced the thermal stability of MXene and reduced the amount of active Ti during cycling, leading to poorer catalytic effect of the catalyst compared to Ti3C2.
Key words: hydrogen storage performance; magnesium hydride; Mo2TiC2 MXene; catalytic mechanism
Superintended by The China Association for Science and Technology (CAST)
Sponsored by The Nonferrous Metals Society of China (NFSOC)
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