Gregory Duncan H
WestCHEM, Department of Chemistry, University of Glasgow, Joseph Black Building, Glasgow G12 8QQ, United Kingdom.
Chem Rec. 2008;8(4):229-39. doi: 10.1002/tcr.20151.
Lithium nitride is an exceptional yet simple compound with remarkable properties that can be tuned with judicious chemical modifications. A unique structure coupled with high ionic mobility present both a fundamental model and an advanced material for energy applications, involving either storage of charge (lithium) or storage of hydrogen. In the former case, and as an electrode material, the system can be modified to increase defects and the number of charge carriers, both ionic and electronic. In so doing, one can create anodes of high reversible capacity. In the latter context, tailoring structure, microstructure, and composition has profound effects on both the amount of hydrogen one can store in the solid state and the rate at which this process (uptake and release) can be achieved.
氮化锂是一种特殊但简单的化合物,具有显著的特性,可通过合理的化学修饰进行调节。独特的结构与高离子迁移率相结合,既为能量应用提供了一个基础模型,也提供了一种先进材料,涉及电荷(锂)存储或氢存储。在前一种情况下,作为电极材料,该系统可以进行改性以增加缺陷以及离子和电子电荷载流子的数量。这样做可以制造出具有高可逆容量的阳极。在后一种情况下,定制结构、微观结构和组成对固态中可存储的氢量以及实现该过程(吸收和释放)的速率都有深远影响。