Evolution of High‐Index Facets Pt Nanocrystals Induced by N‐Defective Sites in the Integrated Electrode for Enhanced Methanol Oxidation

Author:

Li Yuhui12,Yang Jirong12,Liu Feng3,Shi Chaoyang12,Zhu Enze12,Yin Shubiao1,Yu Jie4,Xu Mingli12ORCID

Affiliation:

1. Faculty of Metallurgical and Energy Engineering Kunming University of Science and Technology Kunming 650093 China

2. National and Local Joint Engineering Research Center for Lithium‐ion Batteries and Materials Preparation Technology Kunming 650093 China

3. Yunnan Precious Metals Laboratory Kunming 650100 China

4. Faculty of Materials Science and Engineering Kunming University of Science and Technology Kunming 650093 China

Abstract

AbstractHighly efficient and durable Pt electrocatalysts are the key to boost the performance of fuel cells. The high‐index facets (HIF) Pt nanocrystals are regarded as excellent catalytic activity and stability catalysts. However, nucleation, growth and evolution of high‐index facets Pt nanocrystals induced by defective sites is still a challenge. In this work, tetrahexahedron (THH) and hexactahedron (HOH) Pt nanocrystals are synthesized, which are loaded on the nitrogen‐doped reduced graphene oxide (N‐rGO) support of the integrated electrodes by the square wave pulse method. Experimental investigations and density functional theory (DFT) calculations are conducted to analyze the growth and evolution mechanism of HIF Pt nanocrystals on the graphene‐derived carbon supports. It shows that the H adsorption on the N‐rGO/CFP support can induce evolution of Pt nanocrystals. Moreover, the N‐defective sites on the surface of N‐rGO can lead to a slower growth of Pt nanocrystals than that on the surface of reduced graphene oxide (rGO). Pt/N‐rGO/CFP (20 min) shows the highest specific activity in methanol oxidation, which is 1.5 times higher than that of commercial Pt/C. This research paves the way on the design and synthesis of HIF Pt nanocrystal using graphene‐derived carbon materials as substrates in the future.

Funder

National Natural Science Foundation of China

Major Science and Technology Projects in Yunnan Province

Natural Science Foundation of Yunnan Province

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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