The lithiation of crystalline silicon was studied over several cycles using operando neutron reflectometry over six cycles. A thin layer of aluminum oxide was employed as an artificial coating on the silicon to suppress the solid electrolyte interphase SEI layer related aging effects. Initially, the artificial SEI prevented side effects but led to increased lithium trapping. This layer degraded after two cycles, followed by side reactions, which decrease the coulombic efficiency. No hint for electrode fracturization was found even though the lithiation depth exceeded 1 amp; 956;m. Two distinct zones with high and low lithium concentrations were found, initially separated by a sharp interface, which broadens with cycling. The correlation ...
Operando phase contrast radiography combined with impedance spectroscopy and electron microscopy is ...
The parameters characterizing lithiation processes in silicon anodes of lithium ion batteries (LIBs)...
The solid electrolyte interphase (SEI) of the high capacity anode material Si is monitored over mult...
The lithiation of crystalline silicon was studied over several cycles using operando neutron reflect...
Silicon is a promising anode material for lithium ion batteries due to its ten times higher specific...
We present an operando neutron reflectometry study on the electrochemical incorporation of lithium i...
In situ neutron reflectometry and ex situ secondary ion mass spectrometry in combination with electr...
Neutron reflectometry is used to study in situ the intercalation of lithium into amorphous silicon e...
With the use of neutron reflectometry, we have determined the thickness and chemistry of the solid-e...
Operando neutron reflectometry measurements were carried out to study the insertion of lithium into ...
This work details the in situ characterization of the interface between a silicon electrode and an e...
In order to utilize renewable energy sources to avoid adverse climate change caused by fossil fuel u...
Li-ion batteries are made possible by the solid electrolyte interphase, SEI, a self-forming passivat...
In situ measurements of the growth of solid electrolyte interphase (SEI) layer on silicon and the li...
Charge lost per unit surface area of a silicon electrode due to the formation of solid-electrolyte-i...
Operando phase contrast radiography combined with impedance spectroscopy and electron microscopy is ...
The parameters characterizing lithiation processes in silicon anodes of lithium ion batteries (LIBs)...
The solid electrolyte interphase (SEI) of the high capacity anode material Si is monitored over mult...
The lithiation of crystalline silicon was studied over several cycles using operando neutron reflect...
Silicon is a promising anode material for lithium ion batteries due to its ten times higher specific...
We present an operando neutron reflectometry study on the electrochemical incorporation of lithium i...
In situ neutron reflectometry and ex situ secondary ion mass spectrometry in combination with electr...
Neutron reflectometry is used to study in situ the intercalation of lithium into amorphous silicon e...
With the use of neutron reflectometry, we have determined the thickness and chemistry of the solid-e...
Operando neutron reflectometry measurements were carried out to study the insertion of lithium into ...
This work details the in situ characterization of the interface between a silicon electrode and an e...
In order to utilize renewable energy sources to avoid adverse climate change caused by fossil fuel u...
Li-ion batteries are made possible by the solid electrolyte interphase, SEI, a self-forming passivat...
In situ measurements of the growth of solid electrolyte interphase (SEI) layer on silicon and the li...
Charge lost per unit surface area of a silicon electrode due to the formation of solid-electrolyte-i...
Operando phase contrast radiography combined with impedance spectroscopy and electron microscopy is ...
The parameters characterizing lithiation processes in silicon anodes of lithium ion batteries (LIBs)...
The solid electrolyte interphase (SEI) of the high capacity anode material Si is monitored over mult...