WOS:000390118300022This paper firstly reports the effect of deoxyribonucleic acid ( DNA) molecules extracted from chickpea and wheat plants on the injection/recombination of photogenerated electrons and sensitizing ability of dye-sensitized solar cells (DSSCs). These high-yield DNA molecules are applied as both linker bridging unit as well as thin tunneling barrier (TTB) at titanium dioxide (TiO2)/dye interface, to build up high-efficient DSSCs. With its favorable energy levels, effective linker bridging role, and double helix structure, bifunctional DNA modifier shows an efficient electron injection, suppressed charge recombination, longer electron lifetime, and higher light harvesting efficiency, which leads to higher photovoltaic perform...
Paper presented to the 6th Annual Symposium on Graduate Research and Scholarly Projects (GRASP) held...
The Dye sensitized solar cells (DSSCs) were fabricated using natural dyes extracted from different n...
Supramolecular artificial light harvesting complexes have been designed through binding of a donor d...
WOS:000424728300036The fast charge recombination kinetics and poor sensitizing ability in dye-sensit...
Learning from the concepts used by green plants, we have developed a photovoltaic cell based on mole...
There has been an increasing demand for clean and renewable energy worldwide in the 21st century bec...
Author Institution: Department of Chemistry and Center for Chemical Dynamics, Case Western Reserve U...
Natural dyes can be used in dye sensitized solar cells (DSSCs) to generate low-cost devices, althoug...
Deoxyribonucleic acid (DNA) was successfully incorporated as a nanolayer between the bottom indium t...
Harvesting solar energy can potentially be a promising solution to the energy crisis now and in the ...
This thesis concerns the development and the study of molecular functional photo-electrochemical cel...
Doctor of PhilosophyDepartment of ChemistryJun LiSolar energy as a sustainable resource is a promisi...
Dye-sensitized solar cells (DSSCs) based on nanocrystalline semiconductors such as TiO2 are of great...
In nature, charge recombination in light-harvesting reaction centers is minimized by efficient charg...
This study focuses on understanding the fundamentals of energy transfer and electron transport in ph...
Paper presented to the 6th Annual Symposium on Graduate Research and Scholarly Projects (GRASP) held...
The Dye sensitized solar cells (DSSCs) were fabricated using natural dyes extracted from different n...
Supramolecular artificial light harvesting complexes have been designed through binding of a donor d...
WOS:000424728300036The fast charge recombination kinetics and poor sensitizing ability in dye-sensit...
Learning from the concepts used by green plants, we have developed a photovoltaic cell based on mole...
There has been an increasing demand for clean and renewable energy worldwide in the 21st century bec...
Author Institution: Department of Chemistry and Center for Chemical Dynamics, Case Western Reserve U...
Natural dyes can be used in dye sensitized solar cells (DSSCs) to generate low-cost devices, althoug...
Deoxyribonucleic acid (DNA) was successfully incorporated as a nanolayer between the bottom indium t...
Harvesting solar energy can potentially be a promising solution to the energy crisis now and in the ...
This thesis concerns the development and the study of molecular functional photo-electrochemical cel...
Doctor of PhilosophyDepartment of ChemistryJun LiSolar energy as a sustainable resource is a promisi...
Dye-sensitized solar cells (DSSCs) based on nanocrystalline semiconductors such as TiO2 are of great...
In nature, charge recombination in light-harvesting reaction centers is minimized by efficient charg...
This study focuses on understanding the fundamentals of energy transfer and electron transport in ph...
Paper presented to the 6th Annual Symposium on Graduate Research and Scholarly Projects (GRASP) held...
The Dye sensitized solar cells (DSSCs) were fabricated using natural dyes extracted from different n...
Supramolecular artificial light harvesting complexes have been designed through binding of a donor d...