Multi-metallic electro-catalyst for alkaline exchange membrane fuel cells and method of making same
Some aspects of the invention may be directed to a catalyst layer for anodes of Alkaline Exchange Membrane Fuel Cells (AEMFC). Such catalyst layer may include catalyst nanoparticles and an ionomer. Each catalyst nanoparticle may include one or more nanoparticles of catalytically active metal supported on at least one nanoparticle of crystalline RuO 2 . The diameter of the at least one nanoparticle of the crystalline RuO 2 may be about order of magnitude larger than the diameter of the one or more nanoparticles of catalytically active metal.
1. A catalyst layer for anodes of Alkaline Exchange Membrane Fuel Cells (AEMFC), comprising:
catalyst nanoparticles, wherein each catalyst nanoparticle comprises: one or more nanoparticles of catalytically active metal supported on at least one Ru nanoparticle; and
an ionomer.
2. A catalyst layer according to claim 1 , wherein the catalytically ctive metal is selected from a group consisting of: Pt, Pd, Ir, and their alloys.
3. A catalyst layer according to claim 1 , wherein each catalyst nanoparticle further comprises at least one nanoparticle of a conductive compound.
4. A catalyst layer according to claim 3 , wherein the conductive compound is selected from a group consisting of: crystalline RuO 2 , crystalline doped TiO 2 , crystalline WC and crystalline NbOx.
5. A catalyst layer according to claim 1 , wherein the diameter of the at least one Ru nanoparticle is at least one order of magnitude larger than the diameter of the one or more nanoparticles of catalytically active metal.
6. A catalyst layer according to claim 1 , wherein the size of the catalytically active metal nanoparticles is between 2-10 nm.
7. A catalyst layer according to claim 1 , having at thickness of at most 25 micrometer.
8. A catalyst layer according to claim 1 , comprising between 5-35 wt. % ionomer.