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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Enhanced hydrogen storage properties of MgH2 co-catalyzed with K2NiF6 and CNTs
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Enhanced hydrogen storage properties of MgH2 co-catalyzed with K2NiF6 and CNTs

机译:与K2NiF6和CNT共催化的MgH2的增强的储氢性能

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The composite of MgH2/K2NiF6/carbon nanotubes (CNTs) is prepared by ball milling, and its hydrogenation properties are studied for the first time. MgH2 co-catalyzed with K2NiF6 and CNTs exhibited an improvement in the onset dehydrogenation temperature and isothermal de/rehydrogenation kinetics compared with the MgH2-K2NiF6 composite. The onset dehydrogenation temperature of MgH2 doped with 10 wt% K2NiF6 and 5 wt% CNTs is 245 degrees C, which demonstrated a reduction of 25 degrees C compared with the MgH2 + 10 wt% K2NiF6 composite. In terms of rehydrogenation kinetics, MgH2 doped with 10 wt% K2NiF6 and 5 wt% CNTs samples absorbed 3.4 wt% of hydrogen in 1 min at 320 degrees C, whereas the MgH2 + 10 wt% K2NiF6 sample absorbed 2.6 wt% of hydrogen under the same conditions. For dehydrogenation kinetics at 320 degrees C, the MgH2 + 10 wt% K2NiF6 + 5 wt% CNTs sample released 3.3 wt% hydrogen after 5 min of dehydrogenation. By contrast, MgH2 doped with 10 wt% K2NiF6 released 3.0 wt% hydrogen in the same time period. The apparent activation energy, Ea, for the dehydrogenation of MgH2 doped with 10 wt% K2NiF6 reduced from 100.0 kJ mol(-1) to 70.0 kJ mol(-1) after MgH2 was co-doped with 10 wt% K2NiF6 and 5 wt% CNTs. Based on the experimental results, the hydrogen storage properties of the MgH2/K2NiF6/CNTs composite is enhanced because of the catalytic effects of the active species of KF, KH and Mg2Ni that are formed in situ during dehydrogenation, as well as the unique structure of CNTs.
机译:通过球磨制备了MgH2 / K2NiF6 /碳纳米管(CNTs)复合材料,并首次研究了其加氢性能。与MgH2-K2NiF6复合材料相比,与K2NiF6和CNT共催化的MgH2在起始脱氢温度和等温脱氢/再氢化动力学方面表现出改善。掺有10 wt%K2NiF6和5 wt%CNT的MgH2的起始脱氢温度为245摄氏度,与MgH2 + 10 wt%的K2NiF6复合材料相比,降低了25摄氏度。在重氢动力学方面,掺有10 wt%K2NiF6和5 wt%CNTs的MgH2在320摄氏度下在1分钟内吸收了3.4 wt%的氢,而MgH2 + 10 wt%K2NiF6样品在该条件下吸收了2.6 wt%的氢。相同的条件。对于在320摄氏度下的脱氢动力学,MgH2 + 10 wt%K2NiF6 + 5 wt%CNTs样品在脱氢5分钟后释放了3.3 wt%的氢。相比之下,掺杂有10 wt%K2NiF6的MgH2在同一时间段内释放了3.0 wt%的氢。 MgH2与10 wt%的K2NiF6和5 wt%共掺杂后,掺有10 wt%的K2NiF6的MgH2脱氢的表观活化能Ea从100.0 kJ mol(-1)降至70.0 kJ mol(-1)碳纳米管。根据实验结果,由于在脱氢过程中原位形成的KF,KH和Mg2Ni活性物种的催化作用以及MgH2 / K2NiF6 / CNTs复合材料的储氢性能得到增强。碳纳米管。

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