Department of Materials Science and Engineering, Korea Advanced Institute of Science and Technology (KAIST) , 291 Daehak-ro, Yuseong-gu, Daejeon 34141, Republic of Korea.
ACS Appl Mater Interfaces. 2018 Feb 21;10(7):6531-6540. doi: 10.1021/acsami.7b15421. Epub 2018 Feb 8.
Lithium-oxygen batteries have been considered as one of the most viable energy source options for electric vehicles due to their high energy density. However, they are still faced with technical challenges, such as low round-trip efficiency and short cycle life, which mainly originate from the cathode part of the battery. In this work, we designed a three-dimensional nanofibrous air electrode consisted of hierarchically structured carbon nanotube-bridged hollow FeO nanoparticles (H-FeO/CNT NFs). Composite nanofibers consisted of hollow FeO NPs anchored by multiple CNTs offered enhanced catalytic sites (interconnected hollow FeO NPs) and fast charge-transport highway (bridged CNTs) for facile formation and decomposition of LiO, leading to outstanding cell performance: (1) Swagelok cell exhibited highly reversible cycling characteristics for 250 cycles with a fixed capacity of 1000 mAh g at a current density of 500 mA g. (2) A module composed of two pouch-type cells stably powered an light-emitting diode lamp operated at 5.0 V.
锂-氧电池因其高能量密度而被认为是电动汽车最可行的能源选择之一。然而,它们仍然面临技术挑战,例如低往返效率和短循环寿命,这主要源于电池的阴极部分。在这项工作中,我们设计了一种由分层结构的碳纳米管桥接的中空 FeO 纳米粒子(H-FeO/CNT NFs)组成的三维纳米纤维空气电极。由多个 CNT 锚定的中空 FeO NPs 组成的复合纳米纤维提供了增强的催化位点(互连的中空 FeO NPs)和快速电荷传输高速公路(桥接的 CNTs),便于 LiO 的形成和分解,从而实现了出色的电池性能:(1)Swagelok 电池在 500 mA g 的电流密度下以 1000 mAh g 的固定容量进行了 250 次循环,表现出高度可逆的循环特性。(2)由两个袋式电池组成的模块稳定地为工作电压为 5.0 V 的发光二极管灯供电。