材料科学
镁
箔法
阳极
六角棱镜
面(心理学)
蒸发
六方晶系
真空蒸发
热的
棱镜
冶金
镁合金
复合材料
真空沉积
光电子学
热处理
铝
铝箔
超高真空
作者
Rui Pu,Qingmeng Wang,Jili Yue,Xirui Lu,Wei Wang,Tiantian Wen,Yi Yuan,Baihua Qu,Guangsheng Huang,Yì Wáng,Fusheng Pan
标识
DOI:10.1021/acsenergylett.5c04318
摘要
Rechargeable magnesium batteries (RMBs) are next-generation energy storage systems, but rolled Mg anodes face challenges in fabricating ultrathin Mg foil and achieving inhomogeneous Mg plating/stripping. Herein, a Mg foil (∼10 μm) was deposited onto a Cu substrate (Mg@Cu) via vacuum thermal evaporation (VTE), exhibiting (002)-dominated hexagonal prism arrays. Notably, the Mg@Cu||Mg@Cu symmetric cell achieves a polarization of ∼150 mV cycled over 1000 h under a Mg utilization of 52%. The basal-plane-rich structure in Mg@Cu not only homogenizes Mg2+ distribution but also facilitates Mg2+ transport kinetics, thereby enabling more uniform Mg plating/stripping. Therefore, the Mg@Cu||Mo6S8 full cell maintains 76.6 mAh g–1 after 1500 cycles at 1 C, outperforming the case using rolled Mg foil (67.2 mAh g–1) in terms of capacity retention. This work offers a feasible method to prepare Mg foil avoiding complex processing, which can shed light on the development of a Mg anode for rechargeable magnesium batteries.
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