textDeveloping a fundamental understanding of photocurrent generation processes at organic-inorganic interfaces is critical for improving hybrid solar cell efficiency and stability. This dissertation explores processes at these interfaces by combining data from photovoltaic device performance tests with characterization experiments conducted directly on the device. The dissertation initially focuses on exploring how morphologically and chemically modifying the organic-inorganic interface, between poly(3-hexylthiophene) (P3HT) as the electron donating light absorbing polymer and titanium dioxide (TiO₂) as the electron acceptor, can result in stable and efficient hybrid solar cells. Given the heterogeneity which exists within bulk heterojunct...
In this review, we present important concepts to describe inorganic–organic interfaces in hybrid sol...
Emerging photovoltaics hold great promise to add to the existing solar cell market by either becomin...
In this review, we present important concepts to describe inorganic–organic interfaces in hybrid sol...
137 leaves : ill. (some col.) ; 30 cm.PolyU Library Call No.: [THS] LG51 .H577M AP 2013 LoConvention...
This study systematically investigates the influence of different TiO2 surface modifiers on the devi...
The working mechanisms of excitonic solar cells are strongly dominated by interface processes, which...
The working mechanisms of excitonic solar cells are strongly dominated by interface processes, which...
The working mechanisms of excitonic solar cells are strongly dominated by interface processes, which...
The working mechanisms of excitonic solar cells are strongly dominated by interface processes, which...
The working mechanisms of excitonic solar cells are strongly dominated by interface processes, which...
We report on a study of post-processing treatments in hybrid solar cells based on poly(3-hexylthioph...
The working mechanisms of excitonic solar cells are strongly dominated by interface processes, which...
We report on a study of post-processing treatments in hybrid solar cells based on poly(3-hexylthioph...
Hybrid Titanium dioxide/Poly(3-hexylthiophene) heterojunction solar cells have gained research inter...
Hybrid Titanium dioxide/Poly(3-hexylthiophene) heterojunction solar cells have gained research inter...
In this review, we present important concepts to describe inorganic–organic interfaces in hybrid sol...
Emerging photovoltaics hold great promise to add to the existing solar cell market by either becomin...
In this review, we present important concepts to describe inorganic–organic interfaces in hybrid sol...
137 leaves : ill. (some col.) ; 30 cm.PolyU Library Call No.: [THS] LG51 .H577M AP 2013 LoConvention...
This study systematically investigates the influence of different TiO2 surface modifiers on the devi...
The working mechanisms of excitonic solar cells are strongly dominated by interface processes, which...
The working mechanisms of excitonic solar cells are strongly dominated by interface processes, which...
The working mechanisms of excitonic solar cells are strongly dominated by interface processes, which...
The working mechanisms of excitonic solar cells are strongly dominated by interface processes, which...
The working mechanisms of excitonic solar cells are strongly dominated by interface processes, which...
We report on a study of post-processing treatments in hybrid solar cells based on poly(3-hexylthioph...
The working mechanisms of excitonic solar cells are strongly dominated by interface processes, which...
We report on a study of post-processing treatments in hybrid solar cells based on poly(3-hexylthioph...
Hybrid Titanium dioxide/Poly(3-hexylthiophene) heterojunction solar cells have gained research inter...
Hybrid Titanium dioxide/Poly(3-hexylthiophene) heterojunction solar cells have gained research inter...
In this review, we present important concepts to describe inorganic–organic interfaces in hybrid sol...
Emerging photovoltaics hold great promise to add to the existing solar cell market by either becomin...
In this review, we present important concepts to describe inorganic–organic interfaces in hybrid sol...