Immobilization and characterization of water-insoluble fe complexes as molecular catalysts for water oxidation

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The apparent difference between the expanding consumption of fossil fuels and chemicals and the limited
amount of resources has motivated many researchers to seek solutions for maintaining the sustainability of our
community. Artificial photosynthesis (AP), which utilizes sunlight to produce high-value chemicals, including H2
from abundant resources, is regarded as the most encouraging and viable method. Modern AP systems necessitate in
the first place to develop inexpensive, highly active, and stable catalysts for hydrogen production (Hydrogen Evolving
Reaction, HER) and water oxidation (Oxygen Evolving Reaction, OER), both are a crucial challenge. However, prior
to implementing any artificial systems on water-splitting catalysts that generate oxygen from water without extreme
driving potentials are demanded. Many recent studies concentrate on molecular systems based on the highly abundant
first-row transition metals (TMs) proper as water oxidation catalysts (WOCs) due to their structural versatility,
transparent catalytic mechanisms, and ultimate atomic efficiency concerning catalytic centers. Herein, we report Fe-
based compounds among these TMs as efficient electrocatalysts for OER. In this context, we studied the
electrochemical behaviour of water-insoluble Fe complexes in homogeneous water/organic mixtures to reveal their
intrinsic molecular properties. The water-insolubility of the selected Fe complexes allowed for simple immobilization
methods (dip-coating and drop-casting) on model semiconductors. Ultimately, electrodeposition has been explored to
reduce to a minimum amount of the complex required for long-term operando stability. The consequence of these
studies is that water-insolubility presents a viable strategy for designing new molecular catalyst/(photo)anode hybrids.
- Cím és alcím
- Immobilization and characterization of water-insoluble fe complexes as molecular catalysts for water oxidation
- A könyvrészlet száma
- 27.
- Szerző
- M. Al-Zurai, Sahir
- S. Pap, József
- Szerkesztő
- Bayoumi Hamuda, Prof. Dr. Hosam
- Megjelenés ideje
- 2021
- Hozzáférés szintje
- Open access
- Konferencia címe
- Global Environmental Development & Sustainability: Research, Engineering & Management
- Konferencia ideje
- 2021. November 18-19.
- Nyelv
- en
- Terjedelem
- 8 p.
- Tárgyszó
- artificial photosynthesis, water oxidation, molecular precursor, iron complex, immobilization, electrodeposition
- Változat
- Kiadói változat
- A cikket/könyvrészletet tartalmazó dokumentum címe
- Proceedings Book (Part A) 12th ICEEE-2021 International Annual Conference
- A forrás folyóirat éve
- 2021
- ISBN, e-ISBN
- 978-963-449-256-6
- Műfaj
- Konferenciaközlemény
- Tudományterület
- Természettudományok - kémiai tudományok
- Egyetem
- Óbudai Egyetem
- Kar
- Rejtő Sándor Könnyűipari és Környezetmérnöki Kar