Enhanced CO Functionality on Carbon Papers Ensures Lowering Nucleation Delay of ALD for Ru towards Unprecedented Alkaline HER Activity

Author:

Thalluri Sitaramanjaneya M.12ORCID,Rodriguez‐Pereira Jhonatan12ORCID,Zazpe Raul12ORCID,Bawab Bilal1ORCID,Kolíbalová Eva1ORCID,Jelinek Ludek3ORCID,Macak Jan M.12ORCID

Affiliation:

1. Central European Institute of Technology Brno University of Technology Purkynova 123 61200 Brno Czech Republic

2. Center of Materials and Nanotechnologies Faculty of Chemical Technology University of Pardubice Nam. Cs. Legii 565 53002 Pardubice Czech Republic

3. Department of Power Engineering University of Chemistry and Technology Technická 5, Prague 166 28 Prague‐6 Czech Republic

Abstract

AbstractThe success in lowering the nucleation delay for Atomic Layer Deposition (ALD) of Ru on carbon surfaces is mitigated by constructive pretreatments resulting enhancement of CO functionality. Treatment of the carbon papers (CP) allowed Ru species deposition for minimum number of ALD cycles (25 cycles) with good conformality. The development of electrocatalysts from single atoms to nanoparticles (NPs) on conductive supports with low metal loadings, thus improving performance, is essential in electrocatalysis. For alkaline hydrogen evolution reaction, ALD decorated CPs with Ru exhibit low onset potentials of ≈4.7 mV versus reversable hydrogen electrode (RHE) (at 10 mA cm−2) and a high turnover frequency of 1.92 H2 s−1 at 30 mV versus RHE. The Ru decorated CPs show comparable to higher catalytic activity than of Platinum (Pt) decorated CP also developed by ALD. The current representation of unfamiliar catalytic activities of Ru active centers developed by ALD, pave a bright and sustainable path for energy conversion reactions.

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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