Carbon-based carrier for fuel cell catalyst, catalyst comprising same, membrane-electrode assembly comprising same, and method for preparing same
Disclosed are a carbon-based carrier that is capable of increasing catalyst activity as much as that of a porous type while having excellent durability unique to that of a solid type, a catalyst comprising same, a membrane-electrode assembly comprising same, and a method for preparing same. The carbon-based carrier for a fuel cell catalyst of the present invention is a solid-type carrier, and has an outer surface area of 100-450 m 2 /g, a mesopore volume of 0.25-0.65 cm 3 /g, and a micropore volume of 0.01-0.05 cm 3 /g.
1. A carbon-based support for a fuel cell catalyst, wherein the carbon-based support is a solid-type support and has an external surface area of 100 to 450 m 2 /g, a BET surface area of 150 to 600 m 2 /g, a mesopore volume of 0.25 to 0.65 cm 3 /g, and a micropore volume of 0.01 to 0.05 cm 3 /g,
wherein each of the external surface area, the BET surface area, the mesopore volume, and the micropore volume is an arithmetic mean of measured values obtained from five randomly selected samples using a Brunauer-Emmett-Teller (BET) analyzer (Micromeritics, ASAP-2020).
2. The carbon-based support according to claim 1 , wherein the carbon-based support has a d-spacing value, calculated according to Bragg's law using a (002) peak obtained through XRD analysis, of 3.38 to 3.62 Å.
3. The carbon-based support according to claim 1 , wherein the carbon-based support is an acetylene black support.
4. A catalyst comprising:
the carbon-based support according to claim 1 ; and
catalytic metal particles dispersed on the carbon-based support.
5. A membrane-electrode assembly comprising:
an anode;
a cathode; and
a polymer electrolyte membrane disposed between the anode and the cathode,
wherein at least one of the anode and the cathode comprises the catalyst according to claim 4 .