Graphene oxide (GO) pillared with tetrakis(4-aminophenyl)methane (TKAM) molecules shows a narrow distribution of pore size, relatively high specific surface area, but it is hydrophilic and electrically not conductive. Analysis of XRD, N2 sorption, XPS, TGA and FTIR data proved that the pillared structure and relatively high surface area (∼350 m2 g−1) are preserved even after thermal reduction of GO pillared with TKAM molecules. Unlike many other organic pillaring molecules, TKAM is stable at temperatures above the point of GO thermal reduction, as demonstrated by TGA. Therefore, gentle annealing results in the formation of reduced graphene oxide (rGO) pillared with TKAM molecules. The TKAM pillared reduced graphene oxide (PrGO/TKAM) is less...
The shape/dimension of the oxidized clusters and the process temperature were found to be the main f...
We herein report a facile preparation of graphene oxide (GO) membranes including three steps: (1) mi...
Nanoscale pores in graphene oxide (GO) control various important functions. The nanoporosity of GO i...
Graphene oxide (GO) pillared with tetrakis(4-aminophenyl)methane (TKAM) molecules shows a narrow dis...
Porous pillared graphene oxide (GO) materials were prepared using solvothermal reaction of Hummers G...
Unique layered structure with excellent electrical, mechanical, thermal, and optical properties give...
Solvothermal reaction of graphite oxide (GO) with benzene-1,4-diboronic acid (DBA) was reported prev...
© 2018 The Royal Society of Chemistry. Two-dimensional nanomaterials can be used to create innovati...
In order to prove the existence of an optimum interlayer distance for H-2 uptake, we have obtained H...
© 2018 The Royal Society of Chemistry. Two-dimensional nanomaterials can be used to create innovativ...
Molecular sieving across atomically thin nanoporous graphene is predicted to enable superior gas sep...
Thermally rearranged (TR) polymers are an important class of microporous polymers with remarkable ga...
Graphene oxide (GO) and graphene membranes were fabricated by dip-coating a GO dispersion on a speci...
Carbon materials have been studied for hydrogen storage for decades, but they showed too low capacit...
Graphite oxide (GO) is a hydrophilic, layered material prepared by oxidation of graphite. In the fir...
The shape/dimension of the oxidized clusters and the process temperature were found to be the main f...
We herein report a facile preparation of graphene oxide (GO) membranes including three steps: (1) mi...
Nanoscale pores in graphene oxide (GO) control various important functions. The nanoporosity of GO i...
Graphene oxide (GO) pillared with tetrakis(4-aminophenyl)methane (TKAM) molecules shows a narrow dis...
Porous pillared graphene oxide (GO) materials were prepared using solvothermal reaction of Hummers G...
Unique layered structure with excellent electrical, mechanical, thermal, and optical properties give...
Solvothermal reaction of graphite oxide (GO) with benzene-1,4-diboronic acid (DBA) was reported prev...
© 2018 The Royal Society of Chemistry. Two-dimensional nanomaterials can be used to create innovati...
In order to prove the existence of an optimum interlayer distance for H-2 uptake, we have obtained H...
© 2018 The Royal Society of Chemistry. Two-dimensional nanomaterials can be used to create innovativ...
Molecular sieving across atomically thin nanoporous graphene is predicted to enable superior gas sep...
Thermally rearranged (TR) polymers are an important class of microporous polymers with remarkable ga...
Graphene oxide (GO) and graphene membranes were fabricated by dip-coating a GO dispersion on a speci...
Carbon materials have been studied for hydrogen storage for decades, but they showed too low capacit...
Graphite oxide (GO) is a hydrophilic, layered material prepared by oxidation of graphite. In the fir...
The shape/dimension of the oxidized clusters and the process temperature were found to be the main f...
We herein report a facile preparation of graphene oxide (GO) membranes including three steps: (1) mi...
Nanoscale pores in graphene oxide (GO) control various important functions. The nanoporosity of GO i...