Janus electronic state of supported iridium nanoclusters for sustainable alkaline water electrolysis
Янусоподобное электронное состояние закреплённых нанокластеров иридия для устойчивого щелочного электролиза воды
2024-04-02
SCID: 54.1/fmqbjs4n
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Ir/NiPS3 nanoclustersJanus electronic statealkaline water electrolysishydrogen spilloveroxygen evolution reaction
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Abstract (AI)
Abstract Metal-support electronic interactions play crucial roles in triggering the hydrogen spillover (HSo) to boost hydrogen evolution reaction (HER). It requires the supported metal of electron-rich state to facilitate the proton adsorption/spillover. However, this electron-rich metal state contradicts the traditional metal→support electron transfer protocol and is not compatible with the electron-donating oxygen evolution reaction (OER), especially in proton-poor alkaline conditions. Here we profile an Ir/NiPS3 support structure to study the Ir electronic states and performances in HSo/OER-integrated alkaline water electrolysis. The supported Ir is evidenced with Janus electron-rich and electron-poor states at the tip and interface regions to respectively facilitate the HSo and OER processes. Resultantly, the water electrolysis (WE) is efficiently implemented with 1.51 V at 10 mA cm–2 for 1000 h in 1 M KOH and 1.44 V in urea-KOH electrolyte. This research clarifies the Janus electronic state as fundamental in rationalizing efficient metal-support WE catalysts.
Key Findings
1
Electron-poor interfacial Ir facilitates the electron-donating oxygen evolution reaction, resolving the conflicting electronic requirements of HER and OER.
2
Ir/NiPS3 exhibits a Janus electronic structure, with electron-rich Ir at tip regions and electron-poor Ir at the support interface.
3
The Ir/NiPS3 catalyst achieves alkaline water electrolysis at 1.51 V and 10 mA cm−2 for 1000 hours in 1 M KOH.
4
The catalyst reaches 1.44 V in a urea-KOH electrolyte, supporting Janus electronic states as a design principle for efficient metal-support electrolysis catalysts.
5
The electron-rich Ir tips promote hydrogen adsorption and spillover, enhancing the hydrogen evolution reaction in alkaline conditions.
Research Object
Ir/NiPS3-supported iridium nanoclusters for alkaline water electrolysis
Research Subject
The Janus electron-rich/electron-poor states of supported Ir and their roles in hydrogen spillover and oxygen evolution, enabling efficient alkaline water electrolysis
Publication Details
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2024-04-02
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