Fast Removing Ligands from Platinum‐Based Nanocatalysts by a Square‐Wave Potential Strategy

R Rui Xu (College & Hospital of Stomatology) L Lingshan Liao (College of Material, Chemistry and Chemical Engineering Key Laboratory of Organosilicon Chemistry and Material Technology Ministry of Education Hangzhou Normal University Hangzhou Zhejiang 311121 China) W Wenya Liang (Key Laboratory of Organosilicon Chemistry and Material Technology, Ministry of Education, Zhejiang Key Laboratory of Organosilicon Material Technology, College of Material, Chemistry and Chemical Engineering Hangzhou Normal University Hangzhou P. R. China) H Huaiyi Wang Q Qiusheng Zhou (School of Metallurgy and Environment Central South University Changsha 410083 China) W Wenke Liu M Mengting Chen B Baizeng Fang (School of Chemical Engineering and Energy Technology Dongguan University of Technology Dongguan 523808 China) D Di Wu H Haiyan Jin Y Yunxia Li (General Hospital of Ningxia Medical University Yinchuan China) S Shihui Zou (Institute of Catalysis, Zhejiang University) L Linfang Lu

Abstract

Abstract Developing effective methods to remove ligands from the surface of nanoparticles (NPs) is crucial for obtaining surface‐cleaned nanocatalysts. In this manuscript, we develop a square‐wave potential (SWP) strategy that efficiently removes ligands from the surface of platinum (Pt)‐based nanocatalysts within 1 min (40 s), achieving a removal efficiency 30 times higher than that of traditional cyclic voltammetry cycling. Comprehensive analyses of physical characterization and catalytic performance confirm the effectiveness of the SWP strategy. In situ electrochemical infrared and Raman spectroscopy show that the oxidation potential (1.24 V) can replace the Pt‐N coordination bond with a Pt─O covalent bond to form the intermediate state of Pt‐O‐NH 2 R during ligand removal, while the reduction potential (0.20 V) can detach the ligand from the surface of Pt. Moreover, the SWP strategy is versatile, extending the efficient removal of various ligands from the surface of Pt and the oleylamine ligand from Pt‐based alloy nanocatalysts. The efficient removal of ligands from nanocatalysts is critical for ensuring the reproducibility of electrocatalytic results and for obtaining clean catalysts to reveal intrinsic effects in nanocatalysis.

Article Details

Volume / Issue Vol. 64, Issue 32
Published August 04, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (13)

R

Rui Xu

College & Hospital of Stomatology

L

Lingshan Liao

College of Material, Chemistry and Chemical Engineering Key Laboratory of Organosilicon Chemistry and Material Technology Ministry of Education Hangzhou Normal University Hangzhou Zhejiang 311121 China

W

Wenya Liang

Key Laboratory of Organosilicon Chemistry and Material Technology, Ministry of Education, Zhejiang Key Laboratory of Organosilicon Material Technology, College of Material, Chemistry and Chemical Engineering Hangzhou Normal University Hangzhou P. R. China

H

Huaiyi Wang

Q

Qiusheng Zhou

School of Metallurgy and Environment Central South University Changsha 410083 China

W

Wenke Liu

M

Mengting Chen

B

Baizeng Fang

School of Chemical Engineering and Energy Technology Dongguan University of Technology Dongguan 523808 China

D

Di Wu

H

Haiyan Jin

Y

Yunxia Li

General Hospital of Ningxia Medical University Yinchuan China

S

Shihui Zou

Institute of Catalysis, Zhejiang University

L

Linfang Lu