Roberts Samuel, Kendrick Emma
WMG, University of Warwick, Coventry, UK.
Nanotechnol Sci Appl. 2018 Jun 1;11:23-33. doi: 10.2147/NSA.S146365. eCollection 2018.
With the re-emergence of sodium ion batteries (NIBs), we discuss the reasons for the recent interests in this technology and discuss the synergies between lithium ion battery (LIB) and NIB technologies and the potential for NIB as a "drop-in" technology for LIB manufacturing. The electrochemical testing of sodium materials in sodium metal anode arrangements is reviewed. The performance, stability, and polarization of the sodium in these test cells lead to alternative testing in three-electrode and alternative anode cell configurations. NIB manufacturability is also discussed, together with the impact that the material stability has upon the electrodes and coating. Finally, full-cell NIB technologies are reviewed, and literature proof-of-concept cells give an idea of some of the key differences in the testing protocols of these batteries. For more commercially relevant formats, safety, passive voltage control through cell balancing and cell formation aspects are discussed.
随着钠离子电池(NIBs)的重新兴起,我们探讨了近期人们对这项技术产生兴趣的原因,讨论了锂离子电池(LIB)与NIB技术之间的协同作用,以及NIB作为LIB制造的“直接替代”技术的潜力。综述了钠金属阳极配置中钠材料的电化学测试。这些测试电池中钠的性能、稳定性和极化导致了在三电极和替代阳极电池配置中的替代测试。还讨论了NIB的可制造性,以及材料稳定性对电极和涂层的影响。最后,综述了全电池NIB技术,文献中的概念验证电池给出了这些电池测试协议中一些关键差异的概念。对于更具商业相关性的形式,讨论了安全性、通过电池平衡和电池形成方面的被动电压控制。