We present a numerical model for calculating current-voltage characteristics of polymer:fullerene bulk hetrojunction solar cells at different degrees of nanoscale phase separation. We show that the short-circuit current enhancement with finer phase separation is due to a reduction in bimolecular recombination caused by lateral movement of photogenerated electrons to the fullerene-rich phase. At high bias, vertical electron transport is enhanced and lateral movement is reduced, causing a significant field-dependent carrier extraction for coarse morphologies
We have developed a numerical device model that consistently describes the current-voltage character...
The performance of organic bulk heterojunction solar cells is strongly dependent on the donor/accept...
The performance of organic bulk heterojunction solar cells is strongly dependent on the donor/accept...
We present a numerical model for calculating current-voltage characteristics of polymer:fullerene bu...
We present a numerical model for calculating current-voltage characteristics of polymer:fullerene bu...
We present a numerical model for calculating current-voltage characteristics of polymer:fullerene bu...
We present a numerical model for calculating current-voltage characteristics of polymer:fullerene bu...
We present a combined numerical charge transport and morphology model to describe the current densit...
We present a combined numerical charge transport and morphology model to describe the current densit...
We present a combined numerical charge transport and morphology model to describe the current densit...
We present a combined numerical charge transport and morphology model to describe the current densit...
We present a combined numerical charge transport and morphology model to describe the current densit...
We have developed a numerical device model that consistently describes the current-voltage character...
We have developed a numerical device model that consistently describes the current-voltage character...
We have developed a numerical device model that consistently describes the current-voltage character...
We have developed a numerical device model that consistently describes the current-voltage character...
The performance of organic bulk heterojunction solar cells is strongly dependent on the donor/accept...
The performance of organic bulk heterojunction solar cells is strongly dependent on the donor/accept...
We present a numerical model for calculating current-voltage characteristics of polymer:fullerene bu...
We present a numerical model for calculating current-voltage characteristics of polymer:fullerene bu...
We present a numerical model for calculating current-voltage characteristics of polymer:fullerene bu...
We present a numerical model for calculating current-voltage characteristics of polymer:fullerene bu...
We present a combined numerical charge transport and morphology model to describe the current densit...
We present a combined numerical charge transport and morphology model to describe the current densit...
We present a combined numerical charge transport and morphology model to describe the current densit...
We present a combined numerical charge transport and morphology model to describe the current densit...
We present a combined numerical charge transport and morphology model to describe the current densit...
We have developed a numerical device model that consistently describes the current-voltage character...
We have developed a numerical device model that consistently describes the current-voltage character...
We have developed a numerical device model that consistently describes the current-voltage character...
We have developed a numerical device model that consistently describes the current-voltage character...
The performance of organic bulk heterojunction solar cells is strongly dependent on the donor/accept...
The performance of organic bulk heterojunction solar cells is strongly dependent on the donor/accept...