Impact of dual-layer solid-electrolyte interphase inhomogeneities on early-stage defect formation in Si electrodes

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作者
Chunguang Chen
Tao Zhou
Dmitri L. Danilov
Lu Gao
Svenja Benning
Nino Schön
Samuel Tardif
Hugh Simons
Florian Hausen
Tobias U. Schülli
R.-A. Eichel
Peter H. L. Notten
机构
[1] IEK-9,Nanoscience and Technology Division
[2] Forschungszentrum Jülich,Department of Physics
[3] Eindhoven University of Technology,undefined
[4] ID01 ESRF,undefined
[5] CS 40220,undefined
[6] Argonne National Laboratory,undefined
[7] RWTH Aachen University,undefined
[8] Univ. Grenoble Alpes,undefined
[9] CEA,undefined
[10] IRIG-MEM,undefined
[11] Technical University of Denmark,undefined
[12] University of Technology Sydney,undefined
来源
Nature Communications | / 11卷
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摘要
While intensive efforts have been devoted to studying the nature of the solid-electrolyte interphase (SEI), little attention has been paid to understanding its role in the mechanical failures of electrodes. Here we unveil the impact of SEI inhomogeneities on early-stage defect formation in Si electrodes. Buried under the SEI, these early-stage defects are inaccessible by most surface-probing techniques. With operando full field diffraction X-ray microscopy, we observe the formation of these defects in real time and connect their origin to a heterogeneous degree of lithiation. This heterogeneous lithiation is further correlated to inhomogeneities in topography and lithium-ion mobility in both the inner- and outer-SEI, thanks to a combination of operando atomic force microscopy, electrochemical strain microscopy and sputter-etched X-ray photoelectron spectroscopy. Our multi-modal study bridges observations across the multi-level interfaces (Si/LixSi/inner-SEI/outer-SEI), thus offering novel insights into the impact of SEI homogeneities on the structural stability of Si-based lithium-ion batteries.
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