In this work, waste tea-based porous carbons were prepared by hydrothermal carbonization and then followed by the chemical activation using KOH and ZnCl2. As-prepared porous carbons were then used …
To be used in sodium ion batteries, preparation of the hard carbon anode materials from the bio waste source of apricot shell (AS) via hydrothermal carbonization (HTC) is introduced. Further pyrol…
Salacca peel-based porous carbon (SPPC) with high surface area (1945 m2 g−1) and large specific pore volume (1.68 cm3 g−1) was prepared by pre-carbonization and K2CO3 activation method. Based o…
In this work, waste tea-based porous carbons were prepared by hydrothermal carbonization and then followed by the chemical activation using KOH and ZnCl2. As-prepared porous carbons were then used…
Sodium ion battery (SIB) has become one of the alternative battery system to replace lithium ion battery in the future. The abundant resource and low price of sodium are the main reasons for the de…
In recent years, biomass-based hard carbons have become main interest in sodiumbattery research community because of the abundant availability, cheap and excellent electrochemical performance. He…
Hierarchical porous carbons (HPCs) with different structures from micropores to macropores hierarchical pores were synthesized from biomass waste salacca peels via K2CO3 activation process. HPCs …