Water oxidation is still one of the most important challenges to develop efficient artificial photosynthetic devices. In recent decades, the development and study of molecular complexes for water oxidation have allowed insight into the principles governing catalytic activity and the mechanism as well as establish ligand design guidelines to improve performance. However, their durability and long-term stability compromise the performance of molecular-based artificial photosynthetic devices. In this context, heterogenization of molecular water oxidation catalysts on electrode surfaces has emerged as a promising approach for efficient long-lasting water oxidation for artificial photosynthetic devices. This review covers the state of the art of...
Development of efficient and economic water oxidation catalysts (WOCs) remains a crucial bottleneck ...
Artificial photosynthesis provides a promising strategy for sustainable energy harvesting, yet its o...
Water splitting is the key step towards artificial photosystems for solar energy conversion and stor...
Solar-to-chemical energy conversion, or so-called artificial photosynthesis, is a promising technolo...
Converting solar energyto fuels such as hydrogen by the reaction of water splitting is a promising s...
Artificial photosynthesis provides a promising solution to the future sustainable energy system. Wat...
Water oxidation is the primary reaction of both natural and artificial photosynthesis. Developing ac...
Artificial photosynthesis requires catalysts for efficient and selective conversions of small molecu...
Water oxidation is simple but considered one of the most important electrochemical reactions; it can...
In artificial photosynthesis, the sun drives water splitting into H2 and O2 or converts CO2 into a u...
In this thesis I will describe my contributions to the field of molecular water oxidation catalysis....
To harness solar energy to generate fuels powerful anodes for the water oxidation reaction need to b...
Oxidation of water constitutes one of the most challenging processes in artificial photosynthesis, w...
In artificial photosynthesis, the sun drives water splitting into H2 and O2 or converts CO2 into a u...
The production of hydrogen gas, through the process of water splitting,is one of the most promising ...
Development of efficient and economic water oxidation catalysts (WOCs) remains a crucial bottleneck ...
Artificial photosynthesis provides a promising strategy for sustainable energy harvesting, yet its o...
Water splitting is the key step towards artificial photosystems for solar energy conversion and stor...
Solar-to-chemical energy conversion, or so-called artificial photosynthesis, is a promising technolo...
Converting solar energyto fuels such as hydrogen by the reaction of water splitting is a promising s...
Artificial photosynthesis provides a promising solution to the future sustainable energy system. Wat...
Water oxidation is the primary reaction of both natural and artificial photosynthesis. Developing ac...
Artificial photosynthesis requires catalysts for efficient and selective conversions of small molecu...
Water oxidation is simple but considered one of the most important electrochemical reactions; it can...
In artificial photosynthesis, the sun drives water splitting into H2 and O2 or converts CO2 into a u...
In this thesis I will describe my contributions to the field of molecular water oxidation catalysis....
To harness solar energy to generate fuels powerful anodes for the water oxidation reaction need to b...
Oxidation of water constitutes one of the most challenging processes in artificial photosynthesis, w...
In artificial photosynthesis, the sun drives water splitting into H2 and O2 or converts CO2 into a u...
The production of hydrogen gas, through the process of water splitting,is one of the most promising ...
Development of efficient and economic water oxidation catalysts (WOCs) remains a crucial bottleneck ...
Artificial photosynthesis provides a promising strategy for sustainable energy harvesting, yet its o...
Water splitting is the key step towards artificial photosystems for solar energy conversion and stor...