A microporous carbon derived from biomass (almond shells) and activated with phosphoric acid was analysed as a cathodic matrix in Li–S batteries. By studying the parameters of the carbonization process of this biomass residue, certain conditions were determined to obtain a high surface area of carbon (967 m2 g−1) and high porosity (0.49 cm3 g−1). This carbon was capable of accommodating up to 60% by weight of sulfur, infiltrated by the disulphide method. The C–S composite released an initial specific capacity of 915 mAh g−1 in the Li–S cell at a current density of 100 mA g−1 with a high retention capacity of 760 mAh g−1 after 100 cycles and a coulombic efficiency close to 100%. The good performance of the composite was also observed under h...
Biomass-based carbon has attracted considerable attention as a host material of active sulfur in lit...
Lithium–sulfur batteries have drawn considerable attention because of their extremely high energy de...
While biomass waste is generated in abundance, these materials and their production processes are ge...
A microporous carbon derived from biomass (almond shells) and activated with phosphoric acid was ana...
A microporous carbon derived from biomass (almond shells) and activated with phosphoric acid was ana...
A sustainable and low-cost lithium–sulfur (Li–S) battery was produced by reusing abundant waste from...
A microporous–mesoporous carbon has been successfully prepared via carbonization of sucrose followed...
Porous carbon can be tailored to great effect for electrochemical energy storage. In this study, we ...
The utilization of low-value, abundant and sustainable biomass materials for high-value energy stora...
The development of renewable energy sources requires the parallel development of sustainable energy ...
The development of renewable energy sources requires the parallel development of sustainable energy ...
Embargado hasta 28/02/2024While biomass waste is generated in abundance, these materials and their p...
“Li-ion battery is the most commonly used storage technology today, which specific capacity is insuf...
To obtain a wide variety of green materials, numerous investigations have been undertaken on industr...
Biomass walnut shell was used to prepare activated carbon (AC) through a carbonization treatment and...
Biomass-based carbon has attracted considerable attention as a host material of active sulfur in lit...
Lithium–sulfur batteries have drawn considerable attention because of their extremely high energy de...
While biomass waste is generated in abundance, these materials and their production processes are ge...
A microporous carbon derived from biomass (almond shells) and activated with phosphoric acid was ana...
A microporous carbon derived from biomass (almond shells) and activated with phosphoric acid was ana...
A sustainable and low-cost lithium–sulfur (Li–S) battery was produced by reusing abundant waste from...
A microporous–mesoporous carbon has been successfully prepared via carbonization of sucrose followed...
Porous carbon can be tailored to great effect for electrochemical energy storage. In this study, we ...
The utilization of low-value, abundant and sustainable biomass materials for high-value energy stora...
The development of renewable energy sources requires the parallel development of sustainable energy ...
The development of renewable energy sources requires the parallel development of sustainable energy ...
Embargado hasta 28/02/2024While biomass waste is generated in abundance, these materials and their p...
“Li-ion battery is the most commonly used storage technology today, which specific capacity is insuf...
To obtain a wide variety of green materials, numerous investigations have been undertaken on industr...
Biomass walnut shell was used to prepare activated carbon (AC) through a carbonization treatment and...
Biomass-based carbon has attracted considerable attention as a host material of active sulfur in lit...
Lithium–sulfur batteries have drawn considerable attention because of their extremely high energy de...
While biomass waste is generated in abundance, these materials and their production processes are ge...