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Surface Oxidation of Nano-Silicon as a Method for Cycle Life Enhancement of Li-ion Active Materials

Autor
Ratyński, Maciej
Buchberger, Dominika
Hamankiewicz, Bartosz
Czerwiński, Andrzej
Data publikacji
2020
Abstrakt (EN)

Among the many studied Li-ion active materials, silicon presents the highest specific capacity, however it suffers from a great volume change during lithiation. In this work, we present two methods for the chemical modification of silicon nanoparticles. Both methods change the materials’ electrochemical characteristics. The combined XPS and SEM results show that the properties of the generated silicon oxide layer depend on the modification procedure mployed. Electrochemical characterization reveals that the formed oxide layers show different susceptibility to electro- eduction during the first lithiation. The single step oxidation procedure resulted in a thin and very stable oxide that acts as an artificial SEI layer during electrode operation. The removal of the native oxide prior to further reactions resulted in a very thick oxide layer formation. The created oxide layers (both thin and thick) greatly suppress the effect of silicon volume changes, which significantly reduces electrode degradation during cycling. Both modification techniques are relatively straightforward and scalable to an industrial level. The proposed modified materials reveal great applicability prospects in next generation Li-ion batteries due to their high specific capacity and remarkable cycling stability.

Słowa kluczowe EN
Cycle life
Li-ion
Oxidation
Silicon
Silicon oxide
Dyscyplina PBN
nauki chemiczne
Czasopismo
Molecules
Tom
25
Zeszyt
18
Strony od-do
4093
ISSN
1420-3049
Data udostępnienia w otwartym dostępie
2020-09-07
Licencja otwartego dostępu
Uznanie autorstwa