Wang Na, Chang Mingyuan, Xie Wenrui, Liu Gaozhan, Zhang Lu, He Hao, Yao Xiayin
Key Laboratory of Materials Physics of Ministry of Education, School of Physics and Laboratory of Zhongyuan Light, Zhengzhou University, Zhengzhou, Henan 450001, P. R. China.
Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo 315201, P.R. China.
Nanoscale. 2024 May 9;16(18):8915-8921. doi: 10.1039/d4nr01035c.
All-solid-state lithium batteries coupled with transition metal sulfide cathodes have gained significant attention due to their high energy density and exceptional safety. However, there are still critical challenges impeding their practical application, such as limited capacity delivery, weak ionic reaction kinetics and volume expansion. Herein, an a-NbS/20%VGCF@15%LiPS nanocomposite cathode material is employed in all-solid-state batteries. A certain proportion of VGCF is introduced into crystalline NbS in order to mitigate the volume expansion and improve electronic conductivity. At the same time, a-NbS/20%VGCF is coated with a LiPS solid electrolyte layer to achieve an intimate interfacial contact. The obtained a-NbS/20%VGCF@15%LiPS nanocomposite exhibits a remarkable electronic conductivity (1.0 × 10 S cm) and ionic conductivity (5.5 × 10 S cm), which are improved by five and two orders of magnitude compared to those of NbS, respectively. The Li/LiPSCl/a-NbS/20%VGCF@15%LiPS battery exhibits a high initial discharge capacity of 1043.25 mA h g at 0.1 A g. Even at 0.5 A g, it could provide a reversible capacity of 403.2 mA h g after 500 cycles. This work provides a promising cathode material for all-solid-state lithium batteries with improved ionic/electronic conductivity, high reversible capacity and superior cycling stability.
与过渡金属硫化物阴极相结合的全固态锂电池,因其高能量密度和卓越的安全性而备受关注。然而,仍存在一些关键挑战阻碍其实际应用,如容量输出有限、离子反应动力学较弱以及体积膨胀等问题。在此,一种α-NbS/20%VGCF@15%LiPS纳米复合阴极材料被应用于全固态电池中。将一定比例的VGCF引入结晶态的NbS中,以减轻体积膨胀并提高电子导电性。同时,α-NbS/20%VGCF被包覆上一层LiPS固体电解质层,以实现紧密的界面接触。所制备的α-NbS/20%VGCF@15%LiPS纳米复合材料表现出显著的电子导电性(1.0×10 S cm)和离子导电性(5.5×10 S cm),与NbS相比,分别提高了五个和两个数量级。Li/LiPSCl/α-NbS/20%VGCF@15%LiPS电池在0.1 A g电流密度下表现出1043.25 mA h g的高初始放电容量。即使在0.5 A g电流密度下,经过500次循环后仍能提供403.2 mA h g的可逆容量。这项工作为全固态锂电池提供了一种有前景的阴极材料,具有改善的离子/电子导电性、高可逆容量和优异的循环稳定性。