Lehrstuhl Physikalische Chemie, Technische Universität München, D-85748 Garching, Germany.
J Am Chem Soc. 2009 Nov 18;131(45):16348-9. doi: 10.1021/ja9074216.
Surface segregation of the non-noble component of a Pt bimetallic core-shell catalyst can occur even at room temperature under typical fuel cell cathode application conditions. While in an alkaline environment the nanoparticles remain stable, and the alteration in the surface composition can be tracked in situ; in an acidic electrolyte, any non-noble alloying material at the surface would immediately dissolve into the electrolyte. Therefore, such catalysts are expected to degrade steadily during operation in an acidic fuel cell until only Pt is left.
即使在室温下,典型的燃料电池阴极应用条件下也会发生 Pt 双金属核壳催化剂中非贵金属组分的表面偏析。虽然在碱性环境中纳米颗粒仍然稳定,但可以原位跟踪表面组成的变化;在酸性电解质中,表面上任何非贵金属合金材料都会立即溶解在电解质中。因此,预计在酸性燃料电池的运行过程中,此类催化剂会不断降解,直到只剩下 Pt 为止。