Carbon supported nitrogen surface functionalized silver nanoparticles for gas diffusion electrodes
A composition, a gas diffusion electrode, and a method for fabricating the same is disclosed. In an example, the composition includes carbon supported nitrogen surface functionalized silver nanoparticles. The gas diffusion electrode can be fabricated with the carbon supported nitrogen surface functionalized silver nanoparticles and deployed in a membrane electrode assembly for various applications.
1 . A method, comprising:
preparing an ink comprising carbon supported nitrogen surface functionalized silver nanoparticles, wherein the preparing the ink comprises:
impregnating a microporous carbon structure with nitrogen surface functionalized silver nanoparticles formed in isolation from the microporous carbon structure to form the carbon supported nitrogen surface functionalized silver particles;
mixing the carbon supported nitrogen surface functionalized silver nanoparticles with a solvent; and
applying ultra-sonication to a mixture of the carbon supported nitrogen surface functionalized silver nanoparticles and the solvent; and
depositing the ink on an electrically conductive surface of a gas diffusion electrode; wherein:
a silver loading on the gas diffusion electrode after deposition is from about 0.08 mg/cm 2 to about 0.1 mg/cm 2 ; and
the carbon supported nitrogen surface functionalized silver nanoparticles exhibit a Faradic efficiency of greater than 60%.
2 . The method of claim 1 , wherein the carbon supported nitrogen surface functionalized silver nanoparticles comprise an acid treated carbon structure.
3 . The method of claim 1 , wherein the impregnating the microporous carbon structure with the nitrogen surface functionalized silver nanoparticles comprises:
dispersing the microporous carbon structure in hexane; and mixing the nitrogen surface functionalized silver nanoparticles dispersed in toluene with the microporous carbon structure dispersed in the hexane.
4 . The method of claim 1 , wherein the solvent comprises toluene.
5 . The method of claim 1 , wherein the depositing comprises:
spraying the ink onto the electrically conductive surface with a movable printhead.