We report magnetoconductance measurements on polymer:fullerene photovoltaic devices in the regime of high fields and low temperatures, where spin polarization of injected carriers plays an important role. The current either decreases or increases with magnetic field, depending on whether the interfacial charge-transfer state lies above or below the intramolecular triplet state in energy. Rapid transitions from triplet charge-transfer states to lower-lying triplet excitons constitute an important loss mechanism that is responsible for the negative magnetoconductance observed
We investigate the electrical transport properties of ITO/conjugated polymer-fullerene/Al photovolta...
Journal ArticleMagneto-electroluminescence (MEL) and magneto-conductance (MC) have been investigated...
Charge-transfer (CT) state electroluminescence is investigated in several polymer:fullerene bulk het...
We report magnetoconductance measurements on polymer:fullerene photovoltaic devices in the regime of...
Journal ArticleWe studied magnetoconductance (MC) and magnetoelectroluminescence (MEL) in organic di...
Lightly fullerene-doped polymers are suitable composite systems to study spin-dependent bimolecular ...
This is the author’s version of a work that was accepted for publication in Journal of Physics: Cond...
The influence of light-induced paramagnetic states on the photocurrent generated by polymer:fulleren...
Polymer:fullerene photovoltaics have potential in small-scale power production but low open-circuit ...
Triplet exciton (TE) formation pathways are systematically investigated in prototype bulk heterojunc...
Recently, much effort has been devoted to improve the efficiency of organic photovoltaic solar cells...
Recently, it was discovered that the current through an organic semiconductor, sandwiched between tw...
Harnessing the spin degree of freedom in semiconductors is generally a challenging, yet rewarding ta...
A high absorption coefficient and narrow absorption bands in squaraine (SQ) dyes have resulted in ra...
Kinetic Monte Carlo simulations are used to examine the effect of high-energy, ‘hot’ delocalised cha...
We investigate the electrical transport properties of ITO/conjugated polymer-fullerene/Al photovolta...
Journal ArticleMagneto-electroluminescence (MEL) and magneto-conductance (MC) have been investigated...
Charge-transfer (CT) state electroluminescence is investigated in several polymer:fullerene bulk het...
We report magnetoconductance measurements on polymer:fullerene photovoltaic devices in the regime of...
Journal ArticleWe studied magnetoconductance (MC) and magnetoelectroluminescence (MEL) in organic di...
Lightly fullerene-doped polymers are suitable composite systems to study spin-dependent bimolecular ...
This is the author’s version of a work that was accepted for publication in Journal of Physics: Cond...
The influence of light-induced paramagnetic states on the photocurrent generated by polymer:fulleren...
Polymer:fullerene photovoltaics have potential in small-scale power production but low open-circuit ...
Triplet exciton (TE) formation pathways are systematically investigated in prototype bulk heterojunc...
Recently, much effort has been devoted to improve the efficiency of organic photovoltaic solar cells...
Recently, it was discovered that the current through an organic semiconductor, sandwiched between tw...
Harnessing the spin degree of freedom in semiconductors is generally a challenging, yet rewarding ta...
A high absorption coefficient and narrow absorption bands in squaraine (SQ) dyes have resulted in ra...
Kinetic Monte Carlo simulations are used to examine the effect of high-energy, ‘hot’ delocalised cha...
We investigate the electrical transport properties of ITO/conjugated polymer-fullerene/Al photovolta...
Journal ArticleMagneto-electroluminescence (MEL) and magneto-conductance (MC) have been investigated...
Charge-transfer (CT) state electroluminescence is investigated in several polymer:fullerene bulk het...