FeZrRu Trimetallic bifunctional oxygen electrocatalysts for rechargeable Zn-air batteries
Research output: Journal Publications and Reviews › RGC 21 - Publication in refereed journal › peer-review
Author(s)
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Detail(s)
Original language | English |
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Article number | 141502 |
Journal / Publication | Electrochimica Acta |
Volume | 437 |
Online published | 7 Nov 2022 |
Publication status | Published - 1 Jan 2023 |
Link(s)
Abstract
The development of high active and stable bifunctional electrocatalysts for metal-air batteries remains a challenge due to the slow reaction kinetics both in oxygen reduction reaction (ORR) and oxygen evolution reaction (OER). Herein, a trimetallic electrocatalyst with efficient ORR and OER bifunctional catalytic activities has been fabricated by a one-step high-temperature pyrolysis methodology. The catalyst shows higher catalytic ORR and OER performance than the commercial 46% TKK platinum carbon and IrO2 catalysts, respectively, with a half-wave potential (E1/2) of 0.912 V vs. RHE for ORR in 0.1 M KOH and an overpotential of 250 mV at 10 mA/cm2 for OER in 1 M KOH. Moreover, the carbon encapsulation ensures the high stability of FeZrRu/C catalysts both for both ORR and OER electrocatalysis. The Zn–air batteries using the obtained FeZrRu/C catalysts exhibit a power density as high as 221.34 mW/cm2. This work provides a universal strategy for the synthesis of high-performance trimetal-doped bifunctional electrocatalysts for metal-air batteries and fuel cells.
Research Area(s)
- Carbon encapsulating, Electrocatalysts, bifunctional electrocatalysts, Zinc-Air battery
Citation Format(s)
FeZrRu Trimetallic bifunctional oxygen electrocatalysts for rechargeable Zn-air batteries. / Zhang, Yantong; Wang, Zilong; Guo, Sitian et al.
In: Electrochimica Acta, Vol. 437, 141502, 01.01.2023.
In: Electrochimica Acta, Vol. 437, 141502, 01.01.2023.
Research output: Journal Publications and Reviews › RGC 21 - Publication in refereed journal › peer-review