Hagemann Hans
Dépt. de Chimie Physique, Univ. de Genève, 30, quai E. Ansermet, CH 1211 Geneva 4;, Email:
Chimia (Aarau). 2019 Nov 1;73(11):868-873. doi: 10.2533/chimia.2019.868.
Metal borohydrides have been studied since the beginning of this century as potential hydrogen storage materials due to their high gravimetric hydrogen content. Many new compounds have been synthesized and characterized, however to date the main problem are the kinetics of dehydrogenation and rehydrogenation. In this review we address thermodynamical and chemical properties of boron hydrogen compounds which come into play for hydrogen storage and which must be considered in the search for efficient catalysts. More recently, and hydridoborate and related hydridocarborate compounds have been identified as good ionic conductors for all-solid-state lithium or sodium batteries. The properties of these fascinating and very promising compounds for battery applications are illustrated with recent literature results.
自本世纪初以来,金属硼氢化物因其高重量氢含量而作为潜在的储氢材料受到研究。许多新化合物已被合成和表征,然而迄今为止,主要问题是脱氢和再氢化的动力学。在本综述中,我们讨论了硼氢化合物的热力学和化学性质,这些性质在储氢中起作用,并且在寻找高效催化剂时必须予以考虑。最近,氢化硼酸盐和相关的氢化碳硼酸盐化合物已被确定为全固态锂或钠电池的优良离子导体。本文用近期文献结果阐述了这些用于电池应用的迷人且非常有前景的化合物的性质。