Long cycle performance is a crucial requirement in energy storage devices. New formulations and/or improvement of “conventional” materials have been investigated in order to achieve this target. Here we explore the performance of a novel type of carbon nanospheres (CNSs) with three heteroatom co-doped (nitrogen, phosphorous and sulfur) and high specific surface area as anode materials for lithium ion batteries. The CNSs were obtained from carbonization of highly-crosslinked organo (phosphazene) nanospheres (OPZs) of 300 nm diameter. The OPZs were synthesized via a single and facile step of polycondensation reaction between hexachlorocyclotriphosphazene (HCCP) and 4,4′-sulphonyldiphenol (BPS). The X-ray Photoelectron Spectroscopy (XPS) analy...
Carbonaceous materials with suitable structure and components are highly desirable for the developme...
Hollow carbon nanospheres (HCNSs) were fabricated by annealing the Cu-C core-shell nanoparticles at ...
Nitrogen–sulfur co-doped porous carbon (NSPC) were prepared by using ionic liquids as both nitrogen ...
Long cycle performance is a crucial requirement in energy storage devices. New formulations and/or i...
N-doped carbon materials is of particular attraction for anodes of lithium-ion batteries (LIBs) beca...
Lithium–sulfur batteries are regarded as very promising energy storage devices due to their high ene...
Lithium–sulfur batteries are regarded as very promising energy storage devices due to their high ene...
Carbon nanospheres (CNSs) with a diameter of less than 100 nm, containing nitrogen-functional groups...
The porous carbon nanosphere with multiple heteroatom doping derived from silicon oxycarbonitride (S...
The porous carbon nanosphere with multiple heteroatom doping derived from silicon oxycarbonitride (S...
This study reports a Li–S battery cathode of high volumetric capacity enabled by novel micro- and me...
Although lithium-sulfur batteries are considered as promising high-energy-storage system owing to th...
This study reports a Li–S battery cathode of high volumetric capacity enabled by novel micro- and me...
Lithium–sulfur (Li–S) batteries have exhibited tremendous potential among the various secondary batt...
In this work, carbon nanospheres (CS) are prepared by hydrothermal synthesis using glucose as precur...
Carbonaceous materials with suitable structure and components are highly desirable for the developme...
Hollow carbon nanospheres (HCNSs) were fabricated by annealing the Cu-C core-shell nanoparticles at ...
Nitrogen–sulfur co-doped porous carbon (NSPC) were prepared by using ionic liquids as both nitrogen ...
Long cycle performance is a crucial requirement in energy storage devices. New formulations and/or i...
N-doped carbon materials is of particular attraction for anodes of lithium-ion batteries (LIBs) beca...
Lithium–sulfur batteries are regarded as very promising energy storage devices due to their high ene...
Lithium–sulfur batteries are regarded as very promising energy storage devices due to their high ene...
Carbon nanospheres (CNSs) with a diameter of less than 100 nm, containing nitrogen-functional groups...
The porous carbon nanosphere with multiple heteroatom doping derived from silicon oxycarbonitride (S...
The porous carbon nanosphere with multiple heteroatom doping derived from silicon oxycarbonitride (S...
This study reports a Li–S battery cathode of high volumetric capacity enabled by novel micro- and me...
Although lithium-sulfur batteries are considered as promising high-energy-storage system owing to th...
This study reports a Li–S battery cathode of high volumetric capacity enabled by novel micro- and me...
Lithium–sulfur (Li–S) batteries have exhibited tremendous potential among the various secondary batt...
In this work, carbon nanospheres (CS) are prepared by hydrothermal synthesis using glucose as precur...
Carbonaceous materials with suitable structure and components are highly desirable for the developme...
Hollow carbon nanospheres (HCNSs) were fabricated by annealing the Cu-C core-shell nanoparticles at ...
Nitrogen–sulfur co-doped porous carbon (NSPC) were prepared by using ionic liquids as both nitrogen ...