Artificial photosynthesis requires catalysts for efficient and selective conversions of small molecules. Molecular catalysts are advantageous to use in these instances as they offer precise control over chemical reactivity. They are synthetically tuneable, and their catalytic mechanisms are often well documented and more readily understood than those of solid-state catalysts. In this thesis, the synthetic incorporation of molecular catalysts into heterogenised molecular anodes for water oxidation are evaluated. The catalysts are incorporated as structural linkers into porous metal-organic framework (MOF) structures, and as coordination oligomers stacked onto graphitic surfaces. The preparation of MOF/molecular catalyst hybrid materials of ...
Molecular water oxidation catalysis is a field that has experienced an impressive development over t...
AbstractWater oxidation catalysis is recognized as the bottleneck for the development of efficient d...
Developing efficient molecular water oxidation catalysts for artificial photosynthesis is a challeng...
Artificial photosynthesis requires catalysts for efficient and selective conversions of small molecu...
Artificial photosynthesis requires catalysts for efficient and selective conversions of small molecu...
Artificial photosynthesis provides a promising solution to the future sustainable energy system. Wat...
The major challenges to practical implementation of efficient noble metal based molecular water oxid...
Oxidation of water constitutes one of the most challenging processes in artificial photosynthesis, w...
An increasing global energy demand requires alternative fuel sources. A promising method is artifici...
This thesis concerns the development and study of Ru-based water oxidation catalysts (WOCs) which ar...
Insight into how H2O is oxidized to O-2 is envisioned to facilitate the rational design of artificia...
Water oxidation is a vital anodic reaction for renewable fuel generation via electrochemical- and ph...
The production of hydrogen gas, through the process of water splitting,is one of the most promising ...
Water splitting contains two half-reactions, the water oxidation reaction and the hydrogen reduction...
Solar-to-fuel energy conversion relies on the invention of efficient catalysts enabling water oxidat...
Molecular water oxidation catalysis is a field that has experienced an impressive development over t...
AbstractWater oxidation catalysis is recognized as the bottleneck for the development of efficient d...
Developing efficient molecular water oxidation catalysts for artificial photosynthesis is a challeng...
Artificial photosynthesis requires catalysts for efficient and selective conversions of small molecu...
Artificial photosynthesis requires catalysts for efficient and selective conversions of small molecu...
Artificial photosynthesis provides a promising solution to the future sustainable energy system. Wat...
The major challenges to practical implementation of efficient noble metal based molecular water oxid...
Oxidation of water constitutes one of the most challenging processes in artificial photosynthesis, w...
An increasing global energy demand requires alternative fuel sources. A promising method is artifici...
This thesis concerns the development and study of Ru-based water oxidation catalysts (WOCs) which ar...
Insight into how H2O is oxidized to O-2 is envisioned to facilitate the rational design of artificia...
Water oxidation is a vital anodic reaction for renewable fuel generation via electrochemical- and ph...
The production of hydrogen gas, through the process of water splitting,is one of the most promising ...
Water splitting contains two half-reactions, the water oxidation reaction and the hydrogen reduction...
Solar-to-fuel energy conversion relies on the invention of efficient catalysts enabling water oxidat...
Molecular water oxidation catalysis is a field that has experienced an impressive development over t...
AbstractWater oxidation catalysis is recognized as the bottleneck for the development of efficient d...
Developing efficient molecular water oxidation catalysts for artificial photosynthesis is a challeng...