首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >The remarkably improved hydrogen storage performance of MgH2 by the synergetic effect of an FeNi/rGO nanocomposite
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The remarkably improved hydrogen storage performance of MgH2 by the synergetic effect of an FeNi/rGO nanocomposite

机译:通过Feni / Rgo纳米复合材料的协同作用,显着提高了MGH2的储氢性能

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摘要

Magnesium hydride (MgH2) has been considered as a promising hydrogen storage material for buildings that are powered by hydrogen energy, but its practical application is hampered by poor kinetics and unstable thermodynamics. Herein, we describe a feasible method for preparing FeNi nanoparticles dispersed on reduced graphene oxide nanosheets (FeNi/rGO), and we confirmed that excellent catalytic effects increased the hydrogen storage performance of MgH2. 5 wt% FeNi/rGO-modified MgH2 began to release hydrogen at 230 degrees C and liberated 6.5 wt% H-2 within 10 min at 300 degrees C. As for the hydrogenation process, the dehydrogenated sample absorbed 5.4 wt% H-2 within 20 min at 125 degrees C under a hydrogen pressure of 32 bar. More importantly, a hydrogen capacity of 6.9 wt% was maintained after 50 cycles without compromising the kinetics during each cycle. A unique catalytic mechanism promoted synergetic effects between the in situ-formed Mg2Ni/Mg2NiH4, Fe, and rGO that efficiently promoted hydrogen dissociation and diffusion along the Mg/MgH2 interface, anchored the catalyst, and prevented MgH2 from aggregation and growth.
机译:氢化镁(MGH2)被认为是用于由氢气供电的建筑物的有前途的储氢材料,但其实际应用受到差的动力学和不稳定的热力学的阻碍。在此,我们描述了一种用于制备分散在还原的石墨烯纳米片(Feni / Rgo)上的Feni纳米颗粒的可行方法,并且我们证实优异的催化作用增加了MGH2的储氢性能。 5wt%feni / rgo改性的mgh2开始在230℃下释放氢并在300℃下在10分钟内释放6.5wt%h-2。作为氢化过程,脱氢样品吸收5.4wt%h-2在32巴的氢气压力下在125℃下20分钟。更重要的是,在50次循环后保持6.9wt%的氢容量,而不会在每个循环期间损害动力学。一种独特的催化机制促进了原位形成的Mg2Ni / Mg2NiH4,Fe和Rgo之间的协同作用,可有效地促进沿Mg / MgH2界面的氢解离和扩散,锚定催化剂,并防止了MGH2聚集和生长。

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