控制重构
成核
材料科学
化学物理
化学
计算机科学
热力学
物理
嵌入式系统
作者
Qian Ai,Lalith Krishna Samanth Bonagiri,Kaustubh S. Panse,Jaehyeon Kim,Shan Zhou,Yingjie Zhang
标识
DOI:10.1073/pnas.2421635122
摘要
In electrochemical systems, the structure of electrical double layers (EDLs) near electrode surfaces is crucial for energy conversion and storage functions. While the electrodes in real-world systems are usually heterogeneous, to date the investigation of EDLs is mainly limited to planar, homogeneous substrates. To bridge this gap, here we image the EDL structure of an ionic liquid/graphite battery anode system in the initial stage of interfacial nucleation and growth using our recently developed electrochemical 3D atomic force microscopy. Upon surface nucleation of lithium-containing compounds, the local EDL layers exhibit pronounced restructuring, featuring bending, breaking, and/or reconnecting patterns that switch when the size of the local interphase cluster changes. These EDL reconfiguration patterns are likely universal during nucleation and growth, calling into attention the hitherto hidden contribution of EDL heterogeneity on electrochemical processes.
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