CARBON SUPPORTED CARBOXYL 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 carboxyl surface functionalized silver nanoparticles. The gas diffusion electrode can be fabricated with the carbon supported carboxyl surface functionalized silver nanoparticles and deployed in a membrane electrode assembly for various applications.
1 . A composition, comprising:
carbon supported thiol and carboxyl surface functionalized silver nanoparticles.
2 . The composition of claim 1 , wherein a carbon support of the thiol and carboxyl surface functionalized silver nanoparticles comprises a porous carbon structure.
3 . The composition of claim 2 , wherein a single functional ligand comprises both a carboxyl containing moiety and a thiol containing moiety of the carbon supported thiol and carboxyl surface functionalized silver nanoparticles.
4 . The composition of claim 3 , wherein the single functional ligand comprises at least one of: a mercapto carboxylic acid, methyl thioglycolate, cysteine, or cystamine.
5 . The composition of claim 4 , wherein the mercapto carboxylic acid comprises at least one of: mercaptosuccinic acid, mercaptopropionic acid, 2-mercaptoethanol, 2-mercaptoethylacetate, 6-mercaptohexionicacid, or 10 mercaptodecionic acid.
6 . The composition of claim 1 , wherein the single functional ligand comprises mercaptosuccinic acid.
7 . The composition of claim 5 , wherein the carboxyl containing moiety and the thiol containing moiety are part of two separate functional ligands.
8 . An ink composition, comprising:
carbon supported thiol and carboxyl surface functionalized silver nanoparticles;
water; and
a solvent.
9 . The ink composition of claim 8 , wherein the solvent comprises a polar solvent or a non-polar solvent.
10 . The ink composition of claim 9 , wherein the polar solvent comprises at least one of: ethanol, isopropanol, or butanol.
11 . The ink composition of claim 9 , wherein the non-polar solvent comprises at least one of: toluene, decalin, benzene, or hexane.
12 . The ink composition of claim 8 , wherein a solid concentration of the thiol and carboxyl surface functionalized silver nanoparticles in the water and solvent comprises approximately 0.1 weight percent to 5 weight percent.
13 . The ink composition of claim 12 , wherein the solid concentration of the carboxyl surface functionalized silver nanoparticles comprises approximately 0.34 weight percent.
14 . The ink composition of claim 8 , further comprising:
an ionomer solution.
15 . The ink composition of claim 8 , wherein the carbon supported thiol and carboxyl surface functionalized silver nanoparticles comprise a carboxyl containing moiety bonded to silver nanoparticles and a thiol containing moeity.
16 . The ink composition of claim 15 , wherein the carboxyl containing moiety and the thiol containing moiety are provided from a single functional ligand comprising at least one of: a mercapto carboxylic acid, methyl thioglycolate, or cysteine, cystamine.
17 . An electrode, comprising:
an electrically conductive surface; and
carbon supported thiol and carboxyl surface functionalized silver nanoparticles on the electrically conductive surface.
18 . The electrode of claim 17 , further comprising:
a gas diffusion layer.
19 . The electrode of claim 17 , wherein the carbon supported thiol and carboxyl surface functionalized silver nanoparticles comprise a microporous carbon structure impregnated with thiol and carboxyl surface functionalized silver nanoparticles.
20 . The electrode of claim 19 , wherein the carboxyl surface functionalized silver nanoparticles comprise silver nanoparticles that are functionalized with a carboxyl containing moiety and a thiol moiety.