Chemical Surface Grafting of Pt Nanocatalysts for Reconciling Methanol Tolerance with Methanol Oxidation Activity

Author:

Lenne Quentin1,Mattiuzzi Alice2,Jabin Ivan3,Troian‐Gautier Ludovic34,Hamon Jonathan5,Leroux Yann R.1,Lagrost Corinne1ORCID

Affiliation:

1. ISCR-UMR 6226 Univ Rennes Campus de Beaulieu 35000 Rennes France

2. X4C 48 Auguste Piccard 6041 Gosselies Belgium

3. Laboratoire de Chimie Organique Université libre de Bruxelles CP 160/06, avenue F.D. Roosevelt 50 1050 Brussels Belgium

4. Institut de la Matière Condensée et des Nanosciences Université catholique de Louvain Place Louis Pasteur 1 1348 Louvain-la-Neuve Belgium

5. Institut des Matériaux de Nantes_UMR 6502 Université de Nantes 2 rue de la Houssinière 44000 Nantes France

Abstract

AbstractA conceptual challenge toward more versatile direct methanol fuel cells (DMFCs) is the design of a single material electrocatalyst with high activity and durability for both oxygen reduction reaction (ORR) and methanol oxidation reaction (MOR). This requires to conciliate methanol tolerance not to hinder ORR at the cathode with a good MOR activity at the anode. This is especially incompatible with Pt materials. We tackled this challenge by deriving a supramolecular concept where surface‐grafted molecular ligands regulate the Pt‐catalyst reactivity. ORR and MOR activities of newly reported Pt‐calix[4]arenes nanocatalysts (Pt NPs/C) are compared to commercial benchmark PtNPs/C. Pt NPs/C exhibit a remarkable methanol tolerance without losing the MOR reactivity along with outstanding durability and chemical stability. Beyond designing single‐catalyst material, operable in DMFC cathodic and anodic compartments, the results highlight a promising strategy for tuning interfacial properties.

Funder

Agence Nationale de la Recherche

Publisher

Wiley

Subject

General Energy,General Materials Science,General Chemical Engineering,Environmental Chemistry

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