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Pt 3 Co/Co Composite Catalysts on Porous N-Doped Carbon Support Derived from ZIF-67 with Enhanced HER and ORR Activities.

Jiewen LiuJian ZhangMingjie XuChuanjin TianYanhao DongChang-An Wang
Published in: Inorganic chemistry (2022)
The primary challenge for efficient H 2 evolution and hydrogen energy conversion is to develop highly active and stable catalysts with simple and reliable preparation processes. In this regard, we have designed and synthesized a porous carbon-supported low-Pt alloy catalyst (Pt 3 Co/Co@C composite) using ZIF-67 as a template. It showed uniformly dispersed Pt 3 Co/Co on the porous carbon layer due to the confinement effect of the porous carbon layer. Pt 3 Co/Co@C demonstrated excellent activity for the hydrogen evolution reaction in the full pH range, with an overpotential of 187 mV in 0.5 M H 2 SO 4 to attain 100 mA/cm 2 as well as long-term stability. It also displayed superior mass activity for the oxygen reduction reaction (ORR) at 0.85 V (vs RHE) compared to the commercial Pt/C. Furthermore, the Pt 3 Co/Co@C catalyst exclusively enabled a four-electron reaction process under ORR conditions without the competitive pathway to H 2 O 2 . The current work provides guidance for the design and facile synthesis of Pt-based catalysts with enhanced performance.
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