School of Materials Science and Engineering, Peking University, Beijing, 100871, China.
Jiangzhong Cancer Research Center, Jiangxi University of Traditional Chinese Medicine, Nanchang, 330004, China.
Small. 2021 Jul;17(26):e2100911. doi: 10.1002/smll.202100911. Epub 2021 May 26.
Compressible energy devices have received increasing attention with the rapid development of flexible electronics and wearable devices due to their size adaptability and functional stability. However, it is hard to simultaneously achieve satisfactory energy density and mechanical stability for electrodes. Here an open-porous dual network sponge (DNS) with two networks of highly conductive carbon nanotubes and Li -intercalating TiO -B nanowires is synthesized and employed as compressible lithium ion battery electrodes. All 1D components inside the DNS mutually penetrate with each other to form two physically distinct but functionally coupling networks, endowing DNS excellent compressibility and stability. A prototype compressible lithium-ion battery (C-LIB) is also demonstrated, in which the DNS exhibits a specific capacity of >238 mAh g under static 50% strain, and further in situ measurements show that under 1000 times of cyclic strains, DNS can charge and discharge normally maintaining a high capacity of 240 mAh g and exhibits robustness to fast strain rates up to 500% min . The dual network structure can be extended to design high-performance compliant electrodes that are promising to serve in future compressible and deformable electronics and energy systems.
可压缩能量器件因其尺寸适应性和功能稳定性,在柔性电子和可穿戴设备的快速发展下受到越来越多的关注。然而,要同时实现电极的高能量密度和机械稳定性却很困难。在这里,我们合成了一种具有高导电性碳纳米管和锂离子嵌入 TiO-B 纳米线的双网络开孔海绵(DNS),并将其用作可压缩锂离子电池电极。DNS 内部的所有一维组件相互贯穿,形成两个物理上不同但功能上相互连接的网络,赋予 DNS 优异的可压缩性和稳定性。还展示了一种原型可压缩锂离子电池(C-LIB),其中 DNS 在静态 50%应变下的比容量>238 mAh g-1,进一步的原位测量表明,在 1000 次循环应变下,DNS 可以正常充电和放电,保持 240 mAh g-1 的高容量,并且对高达 500% min-1 的快速应变率表现出稳健性。这种双网络结构可以扩展到设计高性能的顺应性电极,有望应用于未来的可压缩和可变形电子和能源系统。