Here, correlated AFM and scanning Kelvin probe microscopy measurements with sub-100 nm resolution on the phase-separated active layer of polymerfullerene (MDMO-PPV:PCBM) bulk heterojunction solar cells in the dark and under illumination are described. Using numerical modeling a fully quantitative explanation for the contrast and shifts of the surface potential in dark and light is provided. Under illumination an excess of photogenerated electrons is present in both the donor and acceptor phases. From the time evolution of the surface potential after switching off the light the contributions of free and trapped electrons can be identified. Based on these measurements the relative 3D energy level shifts of the sample are calculated. Moreover,...
Control of the nanoscale morphology of the donor\ue2ˆ’acceptor material blends in organic solar cell...
Polymer solar cells have the potential to become a major electrical power generating tool in the twe...
Rapid nanoscale imaging of the bulk heterojunction layer in organic solar cells is essential to the ...
Here, correlated AFM and scanning Kelvin probe microscopy measurements with sub-100 nm resolution on...
We conducted a comprehensive Kelvin probe force microscopy (KPFM) study on a classical organic solar...
Abstract Cross-sectional potential distribution of high open-circuit voltage bulk heterojunction pho...
We study surface photovoltage decays on sub-millisecond time scales in organic solar cells using int...
32 pages, 9 figures, supporting information (5 SI figures), submitted for publicationIn this work, w...
Scanning Kelvin probe microscopy was used to measure band-bending at the model donor/acceptor hetero...
International audienceBulk Heterojunction (BHJ) organic photovoltaic devices performances depend on ...
Nanomaterials are interesting for a variety of applications, such as optoelectronics and photovoltai...
Organic photovoltaics (OPVs) based on conjugated polymer and small molecule semiconductors are a pro...
In bulk-heterojunction solar cells, the device performance strongly depends on the donor and accepto...
We present a numerical model for calculating current-voltage characteristics of polymer:fullerene bu...
Kelvin probe force microscopy (KPFM) is capable of detecting surface potential (SP) distribution of ...
Control of the nanoscale morphology of the donor\ue2ˆ’acceptor material blends in organic solar cell...
Polymer solar cells have the potential to become a major electrical power generating tool in the twe...
Rapid nanoscale imaging of the bulk heterojunction layer in organic solar cells is essential to the ...
Here, correlated AFM and scanning Kelvin probe microscopy measurements with sub-100 nm resolution on...
We conducted a comprehensive Kelvin probe force microscopy (KPFM) study on a classical organic solar...
Abstract Cross-sectional potential distribution of high open-circuit voltage bulk heterojunction pho...
We study surface photovoltage decays on sub-millisecond time scales in organic solar cells using int...
32 pages, 9 figures, supporting information (5 SI figures), submitted for publicationIn this work, w...
Scanning Kelvin probe microscopy was used to measure band-bending at the model donor/acceptor hetero...
International audienceBulk Heterojunction (BHJ) organic photovoltaic devices performances depend on ...
Nanomaterials are interesting for a variety of applications, such as optoelectronics and photovoltai...
Organic photovoltaics (OPVs) based on conjugated polymer and small molecule semiconductors are a pro...
In bulk-heterojunction solar cells, the device performance strongly depends on the donor and accepto...
We present a numerical model for calculating current-voltage characteristics of polymer:fullerene bu...
Kelvin probe force microscopy (KPFM) is capable of detecting surface potential (SP) distribution of ...
Control of the nanoscale morphology of the donor\ue2ˆ’acceptor material blends in organic solar cell...
Polymer solar cells have the potential to become a major electrical power generating tool in the twe...
Rapid nanoscale imaging of the bulk heterojunction layer in organic solar cells is essential to the ...