Kim Su Hyeong, Choi Ji-Hyeok, Park So Hyun, Ahn Tae Young, Cheong Hae-Won, Yoon Young Soo
Department of Materials Science & Engineering, Gachon University, Seongnam 13120, Republic of Korea.
Agency for Defense Development (ADD), Daejeon 34186, Republic of Korea.
Nanomaterials (Basel). 2023 Oct 17;13(20):2783. doi: 10.3390/nano13202783.
Considerable research is being conducted on the use of FeF as a cathode replacement for FeS in thermal batteries. However, FeF alone is inefficient as a cathode active material because of its low electrical conductivity due to its wide bandgap (5.96 eV). Herein, acetylene black and multi-walled carbon nanotubes (MWCNTs) were combined with FeF, and the ratio was optimized. When acetylene black and MWCNTs were added separately to FeF, the electrical conductivity increased, but the mechanical strength decreased. When acetylene black and MWCNTs were both added to FeF, the FeF/MAB sample (with 1 wt.% MWCNTs and 4% AB) afforded a discharge capacity of approximately 74% of the theoretical capacity (712 mAh/g) of FeF. Considering the electrical conductivity and mechanical strength, this composition was confirmed to be the most suitable.
目前正在对使用氟化铁(FeF)作为热电池中硫化铁(FeS)的阴极替代物进行大量研究。然而,仅FeF作为阴极活性材料效率较低,因为其宽带隙(5.96电子伏特)导致电导率低。在此,将乙炔黑和多壁碳纳米管(MWCNTs)与FeF结合,并对比例进行了优化。当分别向FeF中添加乙炔黑和MWCNTs时,电导率增加,但机械强度降低。当同时向FeF中添加乙炔黑和MWCNTs时,FeF/MAB样品(含有1重量%的MWCNTs和4%的AB)的放电容量约为FeF理论容量(712毫安时/克)的74%。考虑到电导率和机械强度,该组成被确认为最合适的。