Direct Synthesis of Pd2+‐Rich Palladene Aerogels as Bifunctional Electrocatalysts for Formic Acid Oxidation Reaction and Oxygen Reduction Reaction

Author:

Wang Cui1,Wei Wei12,Georgi Maximilian1,Hübner René3,Steinbach Christine4,Bräuniger Yannik5,Schwarz Simona4,Kaskel Stefan5,Eychmüller Alexander1ORCID

Affiliation:

1. Physical Chemistry Technische Universität Dresden Zellescher Weg 19 01069 Dresden Germany

2. Center of Analysis and Test School of Chemistry and Chemical Engineering Jiangsu University Xuefu Road 301 212013 Zhenjiang China

3. Helmholtz-Zentrum Dresden-Rossendorf Institute of Ion Beam Physics and Materials Research Bautzner Landstrasse 400 01328 Dresden Germany

4. Leibniz-Institut für Polymerforschung Dresden e.V. Hohe Str. 6 01069 Dresden Germany

5. Department of Inorganic Chemistry I Technische Universität Dresden Bergstraße 66 01069 Dresden Germany

Abstract

AbstractIn this work, we developed a direct strategy to fabricate Palladene (i. e. Palladium metallene) aerogels and propose a temperature‐dependent growth mechanism. Besides the typical three‐dimensional networks and wrinkled surface morphologies, the as‐prepared aerogel is endowed with abundant Pd2+. The as‐prepared aerogel exhibits an excellent mass activity in the formic acid oxidation reaction and a good half‐wave potential in the oxygen reduction reaction in comparison with Pd/C and a Pd aerogel. This work expands the range of metal aerogels from the perspective of the building block units and demonstrates a direct approach to fabricate highly promising bifunctional electrocatalysts for fuel cells.

Funder

Deutsche Forschungsgemeinschaft

China Scholarship Council

Publisher

Wiley

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