Zhang Long, Ma Tao, Yang Yi-Wen, Liu Yi-Fei, Zhou Peng-Hu, Pan Zhao, Hu Bi-Cheng, He Chuan-Xin, Yu Shu-Hong
Department of Chemistry, Institute of Biomimetic Materials & Chemistry, Anhui Engineering Laboratory of Biomimetic Materials, Division of Nanomaterials & Chemistry, Hefei National Research Center for Physical Sciences at the Microscale, Institute of Energy, Hefei Comprehensive National Science Center, University of Science and Technology of China, Hefei, 230026, P. R. China.
College of Chemistry and Environmental Engineering, Shenzhen University, Shenzhen, 518060, P. R. China.
Adv Sci (Weinh). 2022 Oct;9(28):e2203178. doi: 10.1002/advs.202203178. Epub 2022 Aug 9.
Uncontrolled lithium dendrites seriously hinder the commercialization of lithium metal batteries in comparison to the durable lithium-ion batteries. Herein, inspired by squashy pomegranate structure, a novel loading strategy of metallic lithium (Li) is introduced to construct dendrite-free Li metal anodes through porous reduced graphene oxide/Au (PRGO/Au) composite microrods (MRs) as unique storage parcels. The abundant internal voids and robust host structure are capable of achieving high mass loading of Li metal and effectively alleviating the conceivable volume change during cycling, accompanied by the preferential selective plating/stripping of Li inside the graphene-based MRs with the embedded Au nanonuclei. As a result, the obtained PRGO/Au-Li anodes deliver a long-lifespan stable cycling up to 600 h with a high specific capacity of ≈2140 mA h g and voltage hysteresis as low as 20 mV in the absence of dendrites. The assembled full cells exhibit excellent rate capability and cycling stability. This work provides an alternative strategy to construct advanced high-energy-density lithium batteries via the unique 1D bioinspired graphene-based packaging strategy.
与耐用的锂离子电池相比,不受控制的锂枝晶严重阻碍了锂金属电池的商业化。在此,受柔软石榴结构的启发,引入了一种新颖的金属锂(Li)负载策略,通过多孔还原氧化石墨烯/金(PRGO/Au)复合微棒(MRs)作为独特的存储载体来构建无枝晶锂金属阳极。丰富的内部空隙和坚固的主体结构能够实现锂金属的高质量负载,并有效缓解循环过程中可能出现的体积变化,同时在嵌入金纳米核的基于石墨烯的微棒内部实现锂的优先选择性电镀/脱镀。结果,所制备的PRGO/Au-Li阳极在无枝晶的情况下,能够实现长达600小时的长寿命稳定循环,具有约2140 mA h g的高比容量和低至20 mV的电压滞后。组装的全电池表现出优异的倍率性能和循环稳定性。这项工作通过独特的一维仿生石墨烯基封装策略,为构建先进的高能量密度锂电池提供了一种替代策略。