An efficient oxygen evolution reaction catalyst using Ni-Co layered double hydroxide anchored on reduced graphene oxide

ENERGY ADVANCES(2023)

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摘要
An efficient oxygen evolution reaction (OER) catalyst is crucial in various electrochemical applications including renewable energy, electrochemistry, and environmental science. Herein, we report the OER performance and stability of a nonprecious metal electrocatalyst consisting of nickel and cobalt-layered double hydroxides (NiCo-LDH) and reduced graphene oxide (rGO) using hydrothermal methods. The prepared NiCo-LDH@rGO catalyst exhibits a homogeneous distribution of NiCo-LDH on the rGO surface and an excellent OER performance. The OER potential of NiCo-LDH@rGO shows a value of 1.60 V at a current density (eta) of 10 mA cm-2, which is 100 mV lower than that of iridium oxide (IrO2) (eta = 10 mA cm-2 at 1.70 V). Interestingly, at the current density of 20 mA cm-2, the observed OER potentials for NiCo-LDH@rGO and IrO2 are 1.65 and 1.84 V, respectively, indicating that NiCo-LDH@rGO has 190 mV lower overpotential compared to IrO2. The NiCo-LDH@rGO catalyst also shows a lower value of Tafel slope (74 mV dec-1) indicating faster reaction kinetics. The enhanced performance and stability of the NiCo-LDH@rGO catalyst can be attributed to the exposed active sites and the faster electron transfer, due to the synergistic effect of rGO in the NiCo-LDH, which promotes the OER oxidation process. An efficient oxygen evolution reaction (OER) catalyst has been reported from rGO anchored NiCo-LDH nanosheets.
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关键词
graphene hydroxide,oxygen,catalyst
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