The choice of electrode and electrolyte materials to design lithium batteries is limited due to the chemical reactivity of the used materials during the intercalation/deintercalation process. Amorphous silicon carbonitride (SiCN) ceramics are known to be chemically stable in corrosive environments and exhibit disordered carbonaceous regions making it potentially suitable to protect graphite from exfoliation. The material studied in this work was synthesized by mixing commercial graphite powder with the crosslinked polysilazane VL20®. Pyrolysis of the polymer/graphite compound at appropriate temperatures in inert argon atmosphere resulted in the formation of an amorphous SiCN/graphite composite material. First electrochemical investigations ...
Polymer-derived and micro-cracked silicon carbonitride (SiCN) materials have been successfully synth...
Electrochemical performances of multi-walled carbon nanotubes (CNT)-SiCN composite have been investi...
Porous conducting materials represent a promising support for the immobilization of sulfur in the ca...
The choice of electrode and electrolyte materials to design lithium batteries is limited due to the ...
We report on a new composite material in view of its application as a negative electrode in lithium-...
The electrochemical behavior of poly(phenylvinylsilylcarbodiimide)-derived SiCN ceramics as anode ma...
This paper presents the lithium insertion into carbon-rich polymer-derived silicon carbonitride (SiC...
Two classes of preceramic polymers, namely polysilazane and polysilylcarbodiimide, with branched and...
Polymer-derived silicon carbonitride (SiCN) materials have been synthesized via pyrolyzing from five...
New composite materials based on polymer-derived SiCN ceramics and hard carbons were studied in view...
Within this study we report on the impact of the pyrolysis temperature on the structural and electro...
Within this study we report on the impact of the pyrolysis temperature on the structural and electro...
This thesis deals with the investigation of polymer-derived silicon carbonitride based anode materia...
A new composite anode material for lithium ion batteries, based on nano-silicon particles dispersed ...
The focus of this PhD work is on new materials with a tailored microstructure and composition for th...
Polymer-derived and micro-cracked silicon carbonitride (SiCN) materials have been successfully synth...
Electrochemical performances of multi-walled carbon nanotubes (CNT)-SiCN composite have been investi...
Porous conducting materials represent a promising support for the immobilization of sulfur in the ca...
The choice of electrode and electrolyte materials to design lithium batteries is limited due to the ...
We report on a new composite material in view of its application as a negative electrode in lithium-...
The electrochemical behavior of poly(phenylvinylsilylcarbodiimide)-derived SiCN ceramics as anode ma...
This paper presents the lithium insertion into carbon-rich polymer-derived silicon carbonitride (SiC...
Two classes of preceramic polymers, namely polysilazane and polysilylcarbodiimide, with branched and...
Polymer-derived silicon carbonitride (SiCN) materials have been synthesized via pyrolyzing from five...
New composite materials based on polymer-derived SiCN ceramics and hard carbons were studied in view...
Within this study we report on the impact of the pyrolysis temperature on the structural and electro...
Within this study we report on the impact of the pyrolysis temperature on the structural and electro...
This thesis deals with the investigation of polymer-derived silicon carbonitride based anode materia...
A new composite anode material for lithium ion batteries, based on nano-silicon particles dispersed ...
The focus of this PhD work is on new materials with a tailored microstructure and composition for th...
Polymer-derived and micro-cracked silicon carbonitride (SiCN) materials have been successfully synth...
Electrochemical performances of multi-walled carbon nanotubes (CNT)-SiCN composite have been investi...
Porous conducting materials represent a promising support for the immobilization of sulfur in the ca...