Janus electronic state of supported iridium nanoclusters for sustainable alkaline water electrolysis

Янусоподобное электронное состояние закреплённых нанокластеров иридия для устойчивого щелочного электролиза воды
Yaoda Liu, Lei Li, Li Wang, Na Li, Xiaoxu Zhao, Ya Chen, Thangavel Sakthivel, Zhengfei Dai
2024-04-02

Ir/NiPS3 nanoclustersJanus electronic statealkaline water electrolysishydrogen spilloveroxygen evolution reaction
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.
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.

Ir/NiPS3-supported iridium nanoclusters for alkaline water electrolysis

The Janus electron-rich/electron-poor states of supported Ir and their roles in hydrogen spillover and oxygen evolution, enabling efficient alkaline water electrolysis

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Publication Date
2024-04-02
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Authors
Yaoda Liu
Lei Li
Li Wang
Na Li
Xiaoxu Zhao
Ya Chen
Thangavel Sakthivel
Zhengfei Dai
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