The chemistry underlying the aqueous dispersibility of graphene oxide (GO) and reduced graphene oxide (r-GO) is a key consideration in the design of solution processing techniques for the preparation of processable graphene sheets. Here, we use zeta potential measurements, pH titrations, and infrared spectroscopy to establish the chemistry underlying the aqueous dispersibility of GO and r-GO sheets at different values of pH. We show that r-GO sheets have ionizable groups with a single pK value (8.0) while GO sheets have groups that are more acidic (pK = 4.3), in addition to groups with pK values of 6.6 and 9.0. Infrared spectroscopy has been used to follow the sequence of ionization events. In both GO and r-GO sheets, it is ionization of th...
The reduction of graphene oxide (GO) was previously carried out using chemical reducing agents hydra...
The conversion of graphite to graphene oxide (GO) is an effective and widely used method for solubil...
Graphene oxide (GO) can easily dissolve in water to form a stable homogeneous solution due to its hy...
The chemistry underlying the aqueous dispersibility of graphene oxide (GO) and reduced graphene oxid...
The chemistry underlying the aqueous dispersibility of graphene oxide (GO) and reduced graphene oxid...
We present a comparative experimental and molecular-dynamics (MD) simulation study to elucidate the ...
Graphene oxide (GO), as a typical two-dimensional material, possesses a range of oxygen-containing g...
The existing structural models of graphene oxide (GO) contradict each other and cannot adequately ex...
Although graphene oxide (GO) has been used in many applications to improve human life quality, its e...
A critical limitation that has hampered widespread application of the electrically conducting reduce...
A critical limitation that has hampered widespread application of the electrically conducting reduce...
The exceptional solution processing potential of graphene oxide (GO) is always one of its main advan...
The exceptional solution processing potential of graphene oxide (GO) is always one of its main advan...
The reduction of graphene oxide (GO) was previously carried out using chemical reducing agents hydra...
A critical limitation that has hampered widespread application of the electrically conducting reduce...
The reduction of graphene oxide (GO) was previously carried out using chemical reducing agents hydra...
The conversion of graphite to graphene oxide (GO) is an effective and widely used method for solubil...
Graphene oxide (GO) can easily dissolve in water to form a stable homogeneous solution due to its hy...
The chemistry underlying the aqueous dispersibility of graphene oxide (GO) and reduced graphene oxid...
The chemistry underlying the aqueous dispersibility of graphene oxide (GO) and reduced graphene oxid...
We present a comparative experimental and molecular-dynamics (MD) simulation study to elucidate the ...
Graphene oxide (GO), as a typical two-dimensional material, possesses a range of oxygen-containing g...
The existing structural models of graphene oxide (GO) contradict each other and cannot adequately ex...
Although graphene oxide (GO) has been used in many applications to improve human life quality, its e...
A critical limitation that has hampered widespread application of the electrically conducting reduce...
A critical limitation that has hampered widespread application of the electrically conducting reduce...
The exceptional solution processing potential of graphene oxide (GO) is always one of its main advan...
The exceptional solution processing potential of graphene oxide (GO) is always one of its main advan...
The reduction of graphene oxide (GO) was previously carried out using chemical reducing agents hydra...
A critical limitation that has hampered widespread application of the electrically conducting reduce...
The reduction of graphene oxide (GO) was previously carried out using chemical reducing agents hydra...
The conversion of graphite to graphene oxide (GO) is an effective and widely used method for solubil...
Graphene oxide (GO) can easily dissolve in water to form a stable homogeneous solution due to its hy...