Synergistic Effect of Co 9 S 8 and FeS 2 Inlaid on N-Doped Carbon Nanofibers toward a Bifunctional Catalyst for Zn-Air Batteries.

Langmuir : the ACS journal of surfaces and colloids(2022)

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摘要
The development of economical and energy-efficient electrocatalysts is essential for the wide-scale application of secondary zinc-air batteries (ZABs). Herein, we prepared CoS and FeS nanoparticles inlaid on N-doped carbon nanofibers (CoS-FeS@N-CNFs), which were derived from the growth of Fe-doped ZIF-67 nanosheet arrays on electrospun nanofibers and a subsequent sulfidation process. The CoS-FeS@N-CNFs display excellent electrocatalytic performances for OER (, 330 mV) and ORR (, 0.80 V) as well as a smaller charge and discharge gap (Δ, 0.76 V) in KOH electrolyte, allowing it to be employed as an attractive air cathode bifunctional catalyst for secondary ZABs. The electrocatalytic performance of the composite materials (CoS-FeS@N-CNFs) is obviously better than that of the single-component materials (FeS@N-CNFs and CoS@N-CNFs). The improved catalytic performance is mainly attributed to the synergistic effect of the two transition-metal sulfides and the optimization of the structure. Furthermore, the peak power density of the assembled aqueous/solid-state ZABs based on CoS-FeS@N-CNFs can reach 214 and 91 mW cm with excellent stability, respectively, which outperforms the ones based on commercial precious-metal-based catalysts. We anticipate that our work will provide new inspiration for the design of MOF-derived sulfides as multifunctional catalysts.
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carbon nanofibers,zn–air batteries,bifunctional catalyst,n-doped
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