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Recent Advances in the Use of Sodium Borohydride as a Solid State Hydrogen Store

机译:硼氢化钠用作固态储氢剂的最新进展

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The development of new practical hydrogen storage materials with high volumetric and gravimetric hydrogen densities is necessary to implement fuel cell technology for both mobile and stationary applications. NaBH4, owing to its low cost and high hydrogen density (10.6 wt%), has received extensive attention as a promising hydrogen storage medium. However, its practical use is hampered by its high thermodynamic stability and slow hydrogen exchange kinetics. Recent developments have been made in promoting H2 release and tuning the thermodynamics of the thermal decomposition of solid NaBH4. These conceptual advances offer a positive outlook for using NaBH4-based materials as viable hydrogen storage carriers for mobile applications. This review summarizes contemporary progress in this field with a focus on the fundamental dehydrogenation and rehydrogenation pathways and properties and on material design strategies towards improved kinetics and thermodynamics such as catalytic doping, nano-engineering, additive destabilization and chemical modification.
机译:为了实现用于移动和固定应用的燃料电池技术,必须开发具有高体积和重量氢密度的新型实用储氢材料。 NaBH 4 由于其低成本和高氢密度(10.6 wt%)而作为一种有前途的储氢介质受到了广泛关注。然而,其高的热力学稳定性和缓慢的氢交换动力学阻碍了其实际应用。在促进H 2 的释放和调节固体NaBH 4 的热分解的热力学方面取得了最新进展。这些概念上的进步为使用基于NaBH 4 的材料作为移动应用中可行的储氢载体提供了积极的前景。这篇综述总结了该领域的当代进展,重点是基本的脱氢和再氢化途径和性质,以及旨在改善动力学和热力学的材料设计策略,例如催化掺杂,纳米工程,添加剂去稳定和化学改性。

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