Nitrogen-doped banana peel–derived porous carbon foam (N-BPPCF) successfully prepared from banana peels is used as a binder-free electrode for supercapacitors. The N-BPPCF exhibits superior performance including high specific surface areas of 1357.6 m2/g, large pore volume of 0.77 cm3/g, suitable mesopore size distributions around 3.9 nm, and super hydrophilicity with nitrogen-containing functional groups. It can easily be brought into contact with an electrolyte to facilitate electron and ion diffusion. A comparative analysis on the electrochemical properties of BPPCF electrodes is also conducted under similar conditions. The N-BPPCF electrode offers high specific capacitance of 185.8 F/g at 5 mV/s and 210.6 F/g at 0.5 A/g in 6 M KOH aqueo...
Freestanding three-dimensional nitrogen-doped carbon foam with large pores is proposed as a promisin...
A facile and sustainable procedure for the synthesis of nitrogen doped hierarchical porous carbons w...
A facile and efficient method to prepare boron and nitrogen codoped porous carbon foam (BNPC) derive...
Banana peels, a common fruit waste was adopted as a material precursor in this study to synthesize h...
In the present study, the development of a supercapacitor electrode using activated carbon (AC) der...
The plant waste pomelo peels are used as carbon precursors to fabricate nitrogen-doped hierarchical ...
Due to ever-increasing global energy demands and dwindling resources, there is a growing need to dev...
Carbon materials were synthesized from banana fibers by treating the fibers with pore-forming substa...
Supercapacitors (also known as ultracapacitors) are considered to be the most promising approach to ...
Freestanding and highly compressible nitrogen-doped carbon foam (NCF) with excellent hydrophilicity ...
Carbon nanofibers (CNFs) are a fascinating electrode material for energy storage devices due to thei...
© 2018 Elsevier Ltd Porous carbon with high surface area and low cost has emerged as promising alter...
A generalised approach to the preparation of nitrogen-containing porous carbon from cellulose for su...
Freestanding three-dimensional nitrogen-doped carbon foam with large pores is proposed as a promisin...
Porous carbon materials are the most commonly used electrode materials for supercapacitors because o...
Freestanding three-dimensional nitrogen-doped carbon foam with large pores is proposed as a promisin...
A facile and sustainable procedure for the synthesis of nitrogen doped hierarchical porous carbons w...
A facile and efficient method to prepare boron and nitrogen codoped porous carbon foam (BNPC) derive...
Banana peels, a common fruit waste was adopted as a material precursor in this study to synthesize h...
In the present study, the development of a supercapacitor electrode using activated carbon (AC) der...
The plant waste pomelo peels are used as carbon precursors to fabricate nitrogen-doped hierarchical ...
Due to ever-increasing global energy demands and dwindling resources, there is a growing need to dev...
Carbon materials were synthesized from banana fibers by treating the fibers with pore-forming substa...
Supercapacitors (also known as ultracapacitors) are considered to be the most promising approach to ...
Freestanding and highly compressible nitrogen-doped carbon foam (NCF) with excellent hydrophilicity ...
Carbon nanofibers (CNFs) are a fascinating electrode material for energy storage devices due to thei...
© 2018 Elsevier Ltd Porous carbon with high surface area and low cost has emerged as promising alter...
A generalised approach to the preparation of nitrogen-containing porous carbon from cellulose for su...
Freestanding three-dimensional nitrogen-doped carbon foam with large pores is proposed as a promisin...
Porous carbon materials are the most commonly used electrode materials for supercapacitors because o...
Freestanding three-dimensional nitrogen-doped carbon foam with large pores is proposed as a promisin...
A facile and sustainable procedure for the synthesis of nitrogen doped hierarchical porous carbons w...
A facile and efficient method to prepare boron and nitrogen codoped porous carbon foam (BNPC) derive...