Yim Haena, Yu Seung-Ho, Yoo So Yeon, Sung Yung-Eun, Choi Ji-Won
J Nanosci Nanotechnol. 2015 Oct;15(10):8103-7. doi: 10.1166/jnn.2015.11291.
New types of niobates negative electrode were studied for using in lithium-ion batteries in order to alternate metallic lithium anodes. The potassium intercalated compound KCa2Nb3O10 and proton intercalated compound HCa2Nb3O10 were studied, and the electrochemical results showed a reversible cyclic voltammetry profile with acceptable discharge capacity. The as-prepared KCa2Nb3O10 negative electrode had a low discharge capacity caused by high overpotential, but the reversible intercalation and deintercalation reaction of lithium ions was activated after exchanging H+ ions for intercalated K+ ions. The initial discharge capacity of HCa2Nb3O10 was 54.2 mAh/g with 92.1% of coulombic efficiency, compared with 10.4 mAh/g with 70.2% of coulombic efficiency for KCa2Nb3O10 at 1 C rate. The improved electrochemical performance of the HCa2Nb3O10 was related to the lower bonding energy between proton cation and perovskite layer, which facilitate Li+ ions intercalating into the cation site, unlike potassium cation and perovskite layer. Also, this negative material can be easily exfoliated to Ca2Nb3O10 layer by using cation exchange process. Then, obtained two-dimensional nanosheets layer, which recently expected to be an advanced electrode material because of its flexibility, chemical stable, and thin film fabricable, can allow Li+ ions to diffuse between the each perovskite layer. Therefore, this new type layered perovskite niobates can be used not only bulk-type lithium ion batteries but also thin film batteries as a negative material.
为了替代金属锂阳极,研究了用于锂离子电池的新型铌酸盐负极。研究了钾插层化合物KCa2Nb3O10和质子插层化合物HCa2Nb3O10,电化学结果显示出具有可接受放电容量的可逆循环伏安曲线。制备的KCa2Nb3O10负极由于过电位高导致放电容量低,但在用锂离子交换插层的K+离子后,锂离子的可逆嵌入和脱嵌反应被激活。HCa2Nb3O10在1 C倍率下的初始放电容量为54.2 mAh/g,库仑效率为92.1%,而KCa2Nb3O10在1 C倍率下的初始放电容量为10.4 mAh/g,库仑效率为70.2%。HCa2Nb3O10电化学性能的改善与质子阳离子和钙钛矿层之间较低的键能有关,这有利于Li+离子嵌入阳离子位点,这与钾阳离子和钙钛矿层不同。此外,这种负极材料可以通过阳离子交换过程轻松剥离成Ca2Nb3O10层。然后,得到的二维纳米片层由于其柔韧性、化学稳定性和可制成薄膜的特性,最近被认为是一种先进的电极材料,它可以使Li+离子在每个钙钛矿层之间扩散。因此,这种新型层状钙钛矿铌酸盐不仅可以用作块状锂离子电池的负极材料,还可以用作薄膜电池的负极材料。