Wooden magnetic activated carbon fibers (WMACFs) with hierarchical pore structures were obtained by adding magnetic iron oxide (Fe3O4) nanoparticles into the liquefied wood. The structures and properties of WMACFs were analyzed by scanning electronmicroscopy (SEM), X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), N2 adsorption, and vibrating sample magnetometer (VSM). The results showed that WMACFs had high Brunauer-Emmett-Teller (BET) surface area (1578 m2/g) and total pore volume (0.929 cm3/g), of which 45% was the contribution of small mesopores of 2–3 nm. It is believed that Fe3O4 nanoparticles play an important role in the formation of hierarchical pores. With the Fe3O4 content increasing, the yield rate of WMAC...
High surface area activated carbon fibers (ACF) have been prepared from bamboo by steam activation a...
This work presents a rapid and facile way to access the cell wall of wood with magnetic nanoparticle...
This work presents a rapid and facile way to access the cell wall of wood with magnetic nanoparticle...
Wooden magnetic activated carbon fibers (WMACFs) with hierarchical pore structures were obtained by ...
Liquefied wood-based activated carbon fibers (LWACF) were prepared from liquefied wood-based precurs...
Magnetically separable mesoporous activated carbon was prepared from brown coal in the presence of F...
In this study, activated carbon fibers (ACFs) were prepared from liquefied wood by chemical activati...
Polyacrylonitrile (PAN) solution containing the iron oxide precursor iron (III) acetylacetonate (AAI...
In this work, wood bark was liquefied to prepare activated carbon fibers, which were obtained throug...
Magnetic Fe3O4, Fe and Fe/Pd nanoparticles embedded within the pores of activated carbon fabrics (AC...
Magnetic wood is a composite material that achieves harmony between both woody and magnetic function...
Activated carbon fibers (ACFs) were successfully prepared from softwood lignin, which was isolated w...
Activated carbon fiber is known as an excellent adsorbent material due to its well-developed pore st...
Activated carbon fiber was prepared from liquefied wood by chemical activation with ZnCl2 (Z-LWACF) ...
This work presents a rapid and facile way to access the cell wall of wood with magnetic nanoparticle...
High surface area activated carbon fibers (ACF) have been prepared from bamboo by steam activation a...
This work presents a rapid and facile way to access the cell wall of wood with magnetic nanoparticle...
This work presents a rapid and facile way to access the cell wall of wood with magnetic nanoparticle...
Wooden magnetic activated carbon fibers (WMACFs) with hierarchical pore structures were obtained by ...
Liquefied wood-based activated carbon fibers (LWACF) were prepared from liquefied wood-based precurs...
Magnetically separable mesoporous activated carbon was prepared from brown coal in the presence of F...
In this study, activated carbon fibers (ACFs) were prepared from liquefied wood by chemical activati...
Polyacrylonitrile (PAN) solution containing the iron oxide precursor iron (III) acetylacetonate (AAI...
In this work, wood bark was liquefied to prepare activated carbon fibers, which were obtained throug...
Magnetic Fe3O4, Fe and Fe/Pd nanoparticles embedded within the pores of activated carbon fabrics (AC...
Magnetic wood is a composite material that achieves harmony between both woody and magnetic function...
Activated carbon fibers (ACFs) were successfully prepared from softwood lignin, which was isolated w...
Activated carbon fiber is known as an excellent adsorbent material due to its well-developed pore st...
Activated carbon fiber was prepared from liquefied wood by chemical activation with ZnCl2 (Z-LWACF) ...
This work presents a rapid and facile way to access the cell wall of wood with magnetic nanoparticle...
High surface area activated carbon fibers (ACF) have been prepared from bamboo by steam activation a...
This work presents a rapid and facile way to access the cell wall of wood with magnetic nanoparticle...
This work presents a rapid and facile way to access the cell wall of wood with magnetic nanoparticle...