| Literature DB >> 24283393 |
Xiaogang Han1, Yang Liu, Zheng Jia, Yu-Chen Chen, Jiayu Wan, Nicholas Weadock, Karen J Gaskell, Teng Li, Liangbing Hu.
Abstract
Atomic-layer-deposition (ALD) coatings have been increasingly used to improve battery performance. However, the electrochemical and mechanistic roles remain largely unclear, especially for ALD coatings on electrodes that undergo significant volume changes (up to 100%) during charging/discharging. Here we investigate an anode consisting of tin nanoparticles (SnNPs) with an ALD-Al2O3 coating. For the first time, in situ transmission electron microscopy unveiled the dynamic mechanical protection of the ALD-Al2O3 coating by coherently deforming with the SnNPs under the huge volume changes during charging/discharging. Battery tests in coin-cells further showed the ALD-Al2O3 coating remarkably boosts the cycling performance of the Sn anodes, comparing with those made of bare SnNPs. Chemomechanical simulations clearly revealed that a bare SnNP debonds and falls off the underlying substrate upon charging, and by contrast the ALD-Al2O3 coating, like ion-conductive nanoglue, robustly anchors the SnNP anode to the substrate during charging/discharging, a key to improving battery cycle performance.Entities:
Year: 2013 PMID: 24283393 DOI: 10.1021/nl4035626
Source DB: PubMed Journal: Nano Lett ISSN: 1530-6984 Impact factor: 11.189