The solid electrolyte interphase (SEI) that forms on Li-ion battery anodes is critical to their long-term performance, however observing SEI formation processes at the buried electrode-electrolyte interface is a significant challenge. Here we show that operando soft X-ray absorption spectroscopy in total electron yield mode can resolve the chemical evolution of the SEI during electrochemical formation in a Li-ion cell, with nm-scale interface sensitivity. O, F, and Si K-edge spectra, acquired as a function of potential, reveal when key reactions occur on high-capacity amorphous Si anodes cycled with and without fluoroethylene carbonate (FEC). The sequential formation of inorganic (LiF) and organic (-(C=O)O-) components is thereby revealed, ...
Binder-free silicon (BF-Si) nanoparticle anodes were cycled with 1.2 M LiPF6 in ethylene carbonate (...
The key factor in long-term use of batteries is the formation of an electrically insulating solid la...
The key factor in long-term use of batteries is the formation of an electrically insulating solid la...
Advanced metal oxide electrodes in Li-ion batteries usually show reversible capacities exceeding the...
Advanced metal oxide electrodes in Li-ion batteries usually show reversible capacities exceeding the...
Advanced metal oxide electrodes in Li-ion batteries usually show reversible capacities exceeding the...
Silicon offers nine times higher theoretical storage capacity than commercial graphite anodes for Li...
Silicon offers nine times higher theoretical storage capacity than commercial graphite anodes for Li...
Silicon offers a nine times higher theoretical storage capacity than graphite anodes, which dominate...
The solid electrolyte interphase (SEI) is the most critical yet least understood component to guaran...
Silicon offers a nine times higher theoretical storage capacity than graphite anodes, which dominate...
It is widely accepted that solid electrolyte interphase (SEI) layer of carbonaceous material is form...
The solid electrolyte interphase (SEI) is the most critical yet least understood component to guaran...
Silicon offers nine times higher theoretical storage capacity than commercial graphite anodes for Li...
The surface reactions of electrolytes with a silicon anode in lithium ion cells have been investigat...
Binder-free silicon (BF-Si) nanoparticle anodes were cycled with 1.2 M LiPF6 in ethylene carbonate (...
The key factor in long-term use of batteries is the formation of an electrically insulating solid la...
The key factor in long-term use of batteries is the formation of an electrically insulating solid la...
Advanced metal oxide electrodes in Li-ion batteries usually show reversible capacities exceeding the...
Advanced metal oxide electrodes in Li-ion batteries usually show reversible capacities exceeding the...
Advanced metal oxide electrodes in Li-ion batteries usually show reversible capacities exceeding the...
Silicon offers nine times higher theoretical storage capacity than commercial graphite anodes for Li...
Silicon offers nine times higher theoretical storage capacity than commercial graphite anodes for Li...
Silicon offers a nine times higher theoretical storage capacity than graphite anodes, which dominate...
The solid electrolyte interphase (SEI) is the most critical yet least understood component to guaran...
Silicon offers a nine times higher theoretical storage capacity than graphite anodes, which dominate...
It is widely accepted that solid electrolyte interphase (SEI) layer of carbonaceous material is form...
The solid electrolyte interphase (SEI) is the most critical yet least understood component to guaran...
Silicon offers nine times higher theoretical storage capacity than commercial graphite anodes for Li...
The surface reactions of electrolytes with a silicon anode in lithium ion cells have been investigat...
Binder-free silicon (BF-Si) nanoparticle anodes were cycled with 1.2 M LiPF6 in ethylene carbonate (...
The key factor in long-term use of batteries is the formation of an electrically insulating solid la...
The key factor in long-term use of batteries is the formation of an electrically insulating solid la...