arrow
Return

In Situ Probing the Structure Change and Interaction of Interfacial Water and Hydroxyl Intermediates on Ni(OH)2 Surface over Water Splitting

delete2024-04-24
delete25
PRE
AI
H
Huajie Ze
Z
Zhi‐Lan Yang
M
Mu-Lin Li
张霞光 (Xia‐Guang Zhang)
A
A Yao‐Lin
Q
Qing‐Na Zheng
王耀辉 cover
王耀辉 (Yaohui Wang)
J
Jing‐Hua Tian
Y
Yue‐Jiao Zhang
李剑锋 cover
李剑锋 (Jian‐Feng Li) *
DOI:10.1021/jacs.4c00948delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
There is growing acknowledgment that the properties of the electrochemical interfaces play an increasingly pivotal role in improving the performance of the hydrogen evolution reaction (HER). Here, we present, for the first time, direct dynamic spectral evidence illustrating the impact of the interaction between interfacial water molecules and adsorbed hydroxyl species (OHad) on the HER properties of Ni(OH)(2) using Au/core-Ni(OH)(2)/shell nanoparticle-enhanced Raman spectroscopy. Notably, our findings highlight that the interaction between OHad and interfacial water molecules promotes the formation of weakly hydrogen-bonded water, fostering an environment conducive to improving the HER performance. Furthermore, the participation of OHad in the reaction is substantiated by the observed deprotonation step of Au@2 nm Ni(OH)(2) during the HER process. This phenomenon is corroborated by the phase transition of Ni(OH)(2) to NiO, as verified through Raman and X-ray photoelectron spectroscopy. The significant redshift in the OH-stretching frequency of water molecules during the phase transition confirms that surface OHad disrupts the hydrogen-bond network of interfacial water molecules. Through manipulation of the shell thickness of Au@Ni(OH)(2), we additionally validate the interaction between OHad and interfacial water molecules. In summary, our insights emphasize the potential of electrochemical interfacial engineering as a potent approach to enhance electrocatalytic performance.
Keywords:
HYDROGEN-EVOLUTION REACTION
NICKEL-HYDROXIDE
ELECTROCHEMISTRY
SPECTROSCOPY
ELECTROCATALYSTS
OXIDATION
TRENDS
SERS
NI

Journal

Journal of the American Chemical Society cover
Journal of the American Chemical Society
IF:
15.6
Papers:
20.0W
Citations:
60.2W

Organization

M
Minnan Normal University
Scholars:
2.1K
Papers: 1.3K
Citations: 0
H
Henan Normal University
Scholars:
3.1K
Papers: 1.7K
Citations: 1.2W
X
xiamen university
Scholars:
5.7W
Papers: 3.7W
Citations: 67
researcher View more organizations