Abstract
Abstract As alternative energy sources are essential to reach a climate-neutral economy, hydrogen peroxide (H2O2) as futuristic energy carrier gains enormous awareness. However, seeking for stable and electrochemically selective H2O2 ORR electrocatalyst is yet a challenge, making the design of—ideally—bifunctional catalysts extremely important and outmost of interest. In this study, we explore the application of a trimetallic cobalt(II) triazole pyridine bis-[cobalt(III) corrole] complex CoIITP[CoIIIC]2 3 in OER and ORR catalysis due to its remarkable physicochemical properties, fast charge transfer kinetics, electrochemical reversibility, and durability. With nearly 100 \% selective catalytic activity towards the two-electron transfer generated H2O2, an ORR onset potential of 0.8 V vs RHE and a cycling stability of 50 000 cycles are detected. Similarly, promising results are obtained when applied in OER catalysis. A relatively low overpotential at 10 mA cm−2 of 412 mV, Faraday efficiency 98 \% for oxygen, an outstanding Tafel slope of 64 mV dec−1 combined with superior stability.
| Originalsprache | Englisch |
|---|---|
| Aufsatznummer | e202302208 |
| Seitenumfang | 5 |
| Fachzeitschrift | Angewandte Chemie (International Edition) |
| Volume | 62 |
| Ausgabenummer | 21 |
| DOIs | |
| Publikationsstatus | Veröffentlicht - Apr. 2023 |
Wissenschaftszweige
- 104 Chemie
- 104021 Strukturchemie
- 104026 Spektroskopie
- 104015 Organische Chemie
- 104017 Physikalische Chemie
- 106002 Biochemie
- 106041 Strukturbiologie
- 301305 Medizinische Chemie
- 302043 Magnetresonanztomographie (MRT)
JKU-Schwerpunkte
- Sustainable Development: Responsible Technologies and Management
Projekte
- 1 Abgeschlossen
-
Entwicklung und Bau einer Laboranlage zur Aktivierung und elektrokatalytischen Reduktion von Kohlendioxid zu C1- und C2-Produkten
Schöfberger, W. (Projektleiter*in)
01.03.2021 → 29.02.2024
Projekt: Geförderte Forschung › FFG - Österreichische Forschungsförderungsgesellschaft
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