An NiFeSn Oxyhydroxide Electrocatalyst Wet Gel for Highly Efficient Water Electrolysis in Alkaline Media

Nano Energy(2024)

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摘要
Since the kinetic barrier posed by the oxygen evolution reaction (OER) is a significant obstacle in water-splitting systems, the creation of effective and inexpensive OER electrocatalysts has received considerable research interest. We report the facile synthesis of an amorphized NiFeSn oxyhydroxide wet gel on Ni foam via a gelation-induced embedding method. Its intrinsic pore structure provided a sufficiently large surface area without the need for a binder. The NiFeSn oxyhydroxide wet-gel electrocatalyst only needed overpotentials of 253, 301, and 346mV to produce 100, 200, and 300mA·cm-2, respectively, for the OER and an overpotential value of 198mV at 50mA·cm-2 for the hydrogen evolution reaction. Moreover, an exceptionally low voltage of 1.55V was required for overall water splitting under alkaline conditions. Enhancement of the catalytic properties of the oxyhydroxide by adding Sn was confirmed by using density functional theory calculations. The nanoporous multi-metallic wet gel can be used to create effective low-cost stable self-supporting electrocatalysts with a high current density for enhanced water electrolysis.
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aerogels,wet gels,amorphizations,water splitting,water electrolysis
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