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Issue 24, 2017
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Understanding the lithiation/delithiation mechanism of Si1−xGex alloys

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Abstract

GexSi1−x alloys have demonstrated synergetic effects as lithium-ion battery (LIB) anodes, because silicon brings its high lithium storage capacity and germanium its better electronic and Li ion conductivity. Previous studies primarily focused on intricate nanostructured alloys with high costs of production, but here we studied the simpler Si0.5Ge0.5 alloy as a composite electrode. The electrochemical mechanism is explored by a combination of in situ and operando techniques such as powder X-ray diffraction (XRD), X-ray absorption spectroscopy (XAS), Raman spectroscopy and 7Li solid state nuclear magnetic resonance spectroscopy (NMR), all providing unique and complementary information about phase transformations during cycling. In this way amorphization of c-Si0.5Ge0.5 upon lithiation (discharging) and crystallization of a new phase at the end of the discharge have been identified. Additionally, an evolution of the refined cell parameters was observed and related to an overlithiation process. The crystallinity of Si0.5Ge0.5 was not restored upon charging (delithiation) and an amorphous phase was obtained. Lastly, an improved understanding of the electrochemical mechanism of Si1−xGex alloys is mandatory for assessing their viability as LIB anodes.

Graphical abstract: Understanding the lithiation/delithiation mechanism of Si1−xGex alloys

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Publication details

The article was received on 08 Mar 2017, accepted on 16 May 2017 and first published on 24 May 2017


Article type: Paper
DOI: 10.1039/C7TA02100C
Citation: J. Mater. Chem. A, 2017,5, 12462-12473
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    Understanding the lithiation/delithiation mechanism of Si1−xGex alloys

    L. C. Loaiza, E. Salager, N. Louvain, A. Boulaoued, A. Iadecola, P. Johansson, L. Stievano, V. Seznec and L. Monconduit, J. Mater. Chem. A, 2017, 5, 12462
    DOI: 10.1039/C7TA02100C

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