Here we report the in-situ measurement of the nanomorphology (nanostructure) change in blend films of poly(3-hexylthiophene) (P3HT) and 1-(3-methoxycarbonyl)-propyl-1-phenyl-(6,6)C-61 (PCBM), which is one of the standard bulk heterojunction combinations for organic solar cells. The time-dependent variation of the nanostructures at a fixed temperature was monitored with a grazing angle incident X-ray diffraction system empowered by a synchrotron radiation source. In order to understand the influence of film thickness, we fabricated blend films with two different thicknesses (75 nm and 270 nm) using the same substrates coated with a hole-collecting buffer layer as used for the corresponding solar cells. Results uncovered that the nanomorpholo...
Control over the structure of donor/acceptor blends is essential for the development of solution pro...
The efficiency of bulk heterojunction (BHJ) based organic solar cells is highly dependent on the mor...
The performance of polymer solar cells (PSC) strongly depends on the 3D morphological organization o...
The in situ morphology change upon thermal annealing in bulk heterojunction blend films of regioregu...
Transmission electron microscopy and electron diffraction are used to study the changes in morpholog...
Optimizing the morphology of bulk heterojunctions is known to significantly improve the photovoltaic...
The power conversion efficiency in a conjugated polymer-functionalized fullerene bulk heterojunction...
In this work, we have used synchrotron-based grazing incidence X-ray scattering to measure the molec...
In this project, the morphology of bulk heterojunction photovoltaic cells employing a low-bandgap po...
Using grazing incidence X-ray scattering, we observe the effects of solvent vapors upon the morpholo...
The achievement of the desirable morphology at the nanometer scale of bulk heterojunctions consistin...
Although polymer solar cells (PSCs) continue to improve, with advances in power conversion efficienc...
The nanoscale morphology of the active layer in bulk-heterojunction solar cells consisting of regior...
We have studied organic bulk heterojunction photovoltaic devices based on a bridged-bithiophene dono...
From a morphological perspective, the understanding of the influence of the [6,6]-phenyl C71-butyric...
Control over the structure of donor/acceptor blends is essential for the development of solution pro...
The efficiency of bulk heterojunction (BHJ) based organic solar cells is highly dependent on the mor...
The performance of polymer solar cells (PSC) strongly depends on the 3D morphological organization o...
The in situ morphology change upon thermal annealing in bulk heterojunction blend films of regioregu...
Transmission electron microscopy and electron diffraction are used to study the changes in morpholog...
Optimizing the morphology of bulk heterojunctions is known to significantly improve the photovoltaic...
The power conversion efficiency in a conjugated polymer-functionalized fullerene bulk heterojunction...
In this work, we have used synchrotron-based grazing incidence X-ray scattering to measure the molec...
In this project, the morphology of bulk heterojunction photovoltaic cells employing a low-bandgap po...
Using grazing incidence X-ray scattering, we observe the effects of solvent vapors upon the morpholo...
The achievement of the desirable morphology at the nanometer scale of bulk heterojunctions consistin...
Although polymer solar cells (PSCs) continue to improve, with advances in power conversion efficienc...
The nanoscale morphology of the active layer in bulk-heterojunction solar cells consisting of regior...
We have studied organic bulk heterojunction photovoltaic devices based on a bridged-bithiophene dono...
From a morphological perspective, the understanding of the influence of the [6,6]-phenyl C71-butyric...
Control over the structure of donor/acceptor blends is essential for the development of solution pro...
The efficiency of bulk heterojunction (BHJ) based organic solar cells is highly dependent on the mor...
The performance of polymer solar cells (PSC) strongly depends on the 3D morphological organization o...