Phase-Controlled Synthesis of Pd-Se Nanocrystals for Phase-Dependent Oxygen Reduction Catalysis.

Yu, Zhiyong; Xu, Shulin; Feng, Yonggang; Yang, Chengyong; Yao, Qing; Shao, Qi; Li, Ya-Fei; Huang, Xiaoqing · Nano Lett · 2021

basic_science · Level V

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Abstract

Searching for highly efficient oxygen reduction reaction (ORR) electrocatalysts for fuel cell technology, in which the crystal structure plays a powerful role in regulating the electrocatalysis, is urgent yet challenging. Herein, we have explored the active and stable Pd-Se alloy electrocatalysts with controlled phase toward alkaline ORR. The phase-controlled Pd-Se nanoparticles (NPs) show interesting phase-dependent electrocatalytic performance, in which the Pd<sub>17</sub>Se<sub>15</sub> NPs/C exhibits much better ORR performance than its counterpart, Pd<sub>7</sub>Se<sub>4</sub> NPs/C, and the commercial Pd/C and Pt/C. Based on the detailed analysis, Pd in Pd<sub>17</sub>Se<sub>15</sub> possesses more Se atom coordination and a higher valence state, thus providing a stronger capacity for the absorption of oxygenated species. DFT further reveals more charge transfer from the Pd<sub>17</sub>Se<sub>15</sub> surface to the *OOH intermediate, which is the reason for the activity enhancement.