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July 30, 2010Nano Letters247 citations

Real Space Mapping of Li-Ion Transport in Amorphous Si Anodes with Nanometer Resolution

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NBNina BalkeSJStephen JesseYKYoongu Kim

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Abstract

The electrical bias driven Li-ion motion in silicon anode materials in thin film battery heterostructures is investigated using electrochemical strain microscopy (ESM), which is a newly developed scanning probe microscopy based characterization method. ESM utilizes the intrinsic link between bias-controlled Li-ion concentration and molar volume of electrode materials, providing the capability for studies on the sub-20 nm scale, and allows the relationship between Li-ion flow and microstructure to be established. The evolution of Li-ion transport during the battery charging is directly observed.

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Cite This Study

Balke et al. (2010) studied this question.

synapsesocial.com/papers/6a1bc01d69a4af5b15a8ef67https://doi.org/10.1021/nl101439x
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