Capacitive deionization electrode
A process for the manufacturing of 3D reduced graphene oxide/Fe 2 O 3 material includes the following steps: (i) putting in contact a graphene oxide (GO) water dispersion with an aqueous solution of iron(II) sulfate; (ii) hydrothermal treatment; and (iii) freezing the reaction product obtained in step (ii) at a temperature ≤−5° C.; and (iv) lyophilisation. A 3D reduced graphene oxide/Fe 2 O 3 material is obtainable by the process and further relates to electrodes for CDI devices having the material. A method for removing ions from a fluid, like saline water, using the capacitive deionization device includes applying a voltage to the electrodes while supplying the fluid into the capacitive deionization device.
1. A process for obtaining a 3D reduced graphene oxide/Fe 2 O 3 material, the process including the following steps:
(i) putting in contact a graphene oxide (GO) water dispersion with an aqueous solution of only iron(II) sulfate,
(ii) hydrothermal treatment of the resulting dispersion from previous step (i),
(iii) freezing the reaction product obtained in step (ii) at a temperature ≤−5° C., and
(iv) lyophilisation of the product obtained in step (iii).
2. The process according to claim 1 , wherein the GO water dispersion and the iron (II) sulfate aqueous solution are mixed in a weight ratio of GO to iron (II) sulfate (FeSO 4 ) of between 1:0.2 and 1:20.
3. The process according to claim 1 , further including a step of raising the pH value of the resulting dispersion of GO and iron (II) sulfate obtained in step (i) to a pH equal to or lower than 10.
4. The process according to claim 3 , where the pH value is raised with an NH 4 OH solution.
5. The process according to claim 1 , further including a step of washing the reaction product after step (ii) with water.
6. The process according to claim 5 , which further comprises drying the washed reaction product.
7. The process according to claim 1 , wherein the freezing in step (iii) is at −80° C.
8. The process according to claim 1 , wherein the hydrothermal treatment is carried out at temperatures equal or higher than 90° C., and during 10 h to 20 h.