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Nanomaterials for Hydrogen Storage Applications: A Review

机译:储氢纳米材料的研究进展

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Nanomaterials have attracted great interest in recent years because of the unusual mechanical, electrical, electronic, optical, magnetic and surface properties. The high surface/volume ratio of these materials has significant implications with respect to energy storage. Both the high surface area and the opportunity for nanomaterial consolidation are key attributes of this new class of materials for hydrogen storage devices. Nanostructured systems including carbon nanotubes, nano-magnesium based hydrides, complex hydride/carbon nanocomposites, boron nitride nanotubes,TiS2/MoS2nanotubes, alanates, polymer nanocomposites, and metal organic frameworks are considered to be potential candidates for storing large quantities of hydrogen. Recent investigations have shown that nanoscale materials may offer advantages if certain physical and chemical effects related to the nanoscale can be used efficiently. The present review focuses the application of nanostructured materials for storing atomic or molecular hydrogen. The synergistic effects of nanocrystalinity and nanocatalyst doping on the metal or complex hydrides for improving the thermodynamics and hydrogen reaction kinetics are discussed. In addition, various carbonaceous nanomaterials and novel sorbent systems (e.g. carbon nanotubes, fullerenes, nanofibers, polyaniline nanospheres and metal organic frameworks etc.) and their hydrogen storage characteristics are outlined.
机译:由于不寻常的机械,电气,电子,光学,磁性和表面性质,纳米材料近年来引起了极大的兴趣。这些材料的高表面积/体积比对于能量存储具有重要意义。高表面积和纳米材料合并的机会都是用于储氢装置的新型材料的关键属性。包括碳纳米管,基于纳米镁的氢化物,氢化物/碳纳米复合物,氮化硼纳米管,TiS2 / MoS2纳米管,铝酸盐,聚合物纳米复合物和金属有机骨架在内的纳米结构系统被认为是潜在的候选储氢剂。最近的研究表明,如果可以有效利用与纳米级相关的某些物理和化学效应,则纳米级材料可能会提供优势。本综述着重于用于存储原子或分子氢的纳米结构材料的应用。讨论了纳米结晶度和纳米催化剂掺杂对金属或复合氢化物改善热力学和氢反应动力学的协同效应。此外,概述了各种碳质纳米材料和新型吸附剂系统(例如碳纳米管,富勒烯,纳米纤维,聚苯胺纳米球和金属有机骨架等)及其储氢特性。

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