The price of energy to separate tightly bound electron-hole pair (or charge-transfer state) and extract freely movable charges from low-mobility materials represents fundamental losses for many low-cost photovoltaic devices. In bulk heterojunction (BHJ) polymer solar cells (PSCs), approximately 50% of the total efficiency lost among all energy loss pathways is due to the photogenerated charge carrier recombination within PSCs and low charge carrier mobility of disordered organic materials. To address these issues, we introduce magnetic nanoparticles (MNPs) and orientate these MNPS within BHJ composite by an external magnetostatic field. Over 50% enhanced efficiency was observed from BHJ PSCs incorporated with MNPs and an external magnetosta...
Polymer:fullerene photovoltaics have potential in small-scale power production but low open-circuit ...
The magnetoconductance (MC) effect was investigated for two types of organic solar cells with single...
Even though significant breakthroughs with over 18% power conversion efficiencies (PCEs) in polymer:...
Two mechanisms were investigated to understand the magnetic field effects on photocurrent (MFP), a p...
Harvesting energy directly from the Sun is a very attractive, but not an easy way of providing manki...
A high absorption coefficient and narrow absorption bands in squaraine (SQ) dyes have resulted in ra...
Charge transfer in polymer devices represents a crucial, though highly inaccessible stage of photocu...
We report magnetoconductance measurements on polymer:fullerene photovoltaic devices in the regime of...
Plastic solar cells bear the potential for large-scale power generation based on materials that prov...
Bulk-heterojunction polymer solar cells are promising alternatives for conventional energy sources. ...
Plastic photovoltaic devices offer a real potential for making solar energy economically viable. Unf...
In this thesis, we observe the charge transport and recombination dynamics in thin film bulk heteroj...
We report, for the first time, the effect of solution-processed Fe3O4 magnetic nanoparticles (MNP) t...
We acknowledge financial support from the Engineering and Physical Science Research Council (EPSRC) ...
We report magnetoconductance measurements on polymer:fullerene photovoltaic devices in the regime of...
Polymer:fullerene photovoltaics have potential in small-scale power production but low open-circuit ...
The magnetoconductance (MC) effect was investigated for two types of organic solar cells with single...
Even though significant breakthroughs with over 18% power conversion efficiencies (PCEs) in polymer:...
Two mechanisms were investigated to understand the magnetic field effects on photocurrent (MFP), a p...
Harvesting energy directly from the Sun is a very attractive, but not an easy way of providing manki...
A high absorption coefficient and narrow absorption bands in squaraine (SQ) dyes have resulted in ra...
Charge transfer in polymer devices represents a crucial, though highly inaccessible stage of photocu...
We report magnetoconductance measurements on polymer:fullerene photovoltaic devices in the regime of...
Plastic solar cells bear the potential for large-scale power generation based on materials that prov...
Bulk-heterojunction polymer solar cells are promising alternatives for conventional energy sources. ...
Plastic photovoltaic devices offer a real potential for making solar energy economically viable. Unf...
In this thesis, we observe the charge transport and recombination dynamics in thin film bulk heteroj...
We report, for the first time, the effect of solution-processed Fe3O4 magnetic nanoparticles (MNP) t...
We acknowledge financial support from the Engineering and Physical Science Research Council (EPSRC) ...
We report magnetoconductance measurements on polymer:fullerene photovoltaic devices in the regime of...
Polymer:fullerene photovoltaics have potential in small-scale power production but low open-circuit ...
The magnetoconductance (MC) effect was investigated for two types of organic solar cells with single...
Even though significant breakthroughs with over 18% power conversion efficiencies (PCEs) in polymer:...