Self-assembly of graphene oxide (GO) nanosheets into porous 3D sponges is a promising approach to exploit their capacity to adsorb contaminants while facilitating the recovery of the nanosheets from treated water. Yet, forming mechanically robust sponges with suitable adsorption properties presents a significant challenge. Ultra-strong and highly porous 3D sponges are formed using GO, vitamin C (VC), and cellulose nanocrystals (CNCs) – natural nanorods isolated from wood pulp. CNCs provide a robust scaffold for the partially reduced GO (rGO) nanosheets resulting in an exceptionally stiff nanohybrid. The concentration of VC as a reducing agent plays a critical role in tailoring the pore architecture of the sponges. By using excess amounts of...
Developing high-performance nanostructured sorbents for water treatment is of great importance. Here...
A new class of cellular solids with macro and micro porosity have been synthesized by the combinatio...
Water decontamination and oil/water separation are principal motives in the surge to develop novel m...
In this study, superlight adsorbent sponges (bulk density 0.016–0.049 g·cm<sup>–3</sup>) were develo...
Water treatment technologies based on graphene oxide (GO) sponges show promise due to their high sur...
In this study, we demonstrated the potential of graphene nanomaterials as environmental pollutant ad...
Water treatment technologies based on graphene oxide (GO) sponges show promise due to their high sur...
3D porous graphene nanosponge has broad application prospects in intelligent sensing, wastewater tre...
Several reports illustrate the wide range applicability of graphene oxide (GO) in water remediation....
Carbon nanotube sponges are synthesized by chemical vapor deposition, in which nanotubes are self-as...
Several reports illustrate the wide range applicability of graphene oxide (GO) in water remediation....
Graphene oxide (GO) sheets have been assembled into various three-dimensional porous structures and ...
A new class of cellular solids with macro and micro porosity have been synthesized by the combinatio...
Graphene oxide (GO) sheets have been assembled into various three-dimensional porous structures and ...
Water decontamination and oil/water separation are principal motives in the surge to develop novel m...
Developing high-performance nanostructured sorbents for water treatment is of great importance. Here...
A new class of cellular solids with macro and micro porosity have been synthesized by the combinatio...
Water decontamination and oil/water separation are principal motives in the surge to develop novel m...
In this study, superlight adsorbent sponges (bulk density 0.016–0.049 g·cm<sup>–3</sup>) were develo...
Water treatment technologies based on graphene oxide (GO) sponges show promise due to their high sur...
In this study, we demonstrated the potential of graphene nanomaterials as environmental pollutant ad...
Water treatment technologies based on graphene oxide (GO) sponges show promise due to their high sur...
3D porous graphene nanosponge has broad application prospects in intelligent sensing, wastewater tre...
Several reports illustrate the wide range applicability of graphene oxide (GO) in water remediation....
Carbon nanotube sponges are synthesized by chemical vapor deposition, in which nanotubes are self-as...
Several reports illustrate the wide range applicability of graphene oxide (GO) in water remediation....
Graphene oxide (GO) sheets have been assembled into various three-dimensional porous structures and ...
A new class of cellular solids with macro and micro porosity have been synthesized by the combinatio...
Graphene oxide (GO) sheets have been assembled into various three-dimensional porous structures and ...
Water decontamination and oil/water separation are principal motives in the surge to develop novel m...
Developing high-performance nanostructured sorbents for water treatment is of great importance. Here...
A new class of cellular solids with macro and micro porosity have been synthesized by the combinatio...
Water decontamination and oil/water separation are principal motives in the surge to develop novel m...