The resolution capability of the scanning electron microscope has increased immensely in recent years, and is now within the sub-nanometre range, at least for inorganic materials. An equivalent advance has not yet been achieved for imaging the morphologies of nanostructured organic materials, such as organic photovoltaic blends. Here we show that energy-selective secondary electron detection can be used to obtain high-contrast, material-specific images of an organic photovoltaic blend. We also find that we can differentiate mixed phases from pure material phases in our data. The lateral resolution demonstrated is twice that previously reported from secondary electron imaging. Our results suggest that our energy-filtered scanning electron mi...
We reveal nanoscale information of semi-crystalline polypropyl-ene with the use of a new secondary e...
Organic solar cells using carbon based materials have the potential to deliver cheap solar electrici...
Morphology of organic photovoltaic bulk heterojunctions (BHJs) - a nanoscale texture of the donor an...
In this thesis, a range of new techniques are developed in the scanning electron microscope (SEM) fo...
Finding the optimal morphology of novel organic photovoltaic (OPV) polymer blends is a major obstacl...
With organic photovoltaic (OPV) technology moving towards commercialisation, high-throughput analyti...
The success of semiconducting organic materials has enabled green technologies for electronics, ligh...
Understanding nanoscale molecular order within organic electronic materials is a crucial factor in b...
AbstractUsing analytical transmission electron microscopy, we investigated spectral images of blends...
Energy-filtered backscattered electron imaging in a scanning electron microscope is performed on a b...
Understanding nanoscale molecular order within organic electronic materials is a crucial factor in b...
International audienceThe efficiency of organic solar cells with donor polymers and non-fullerene ac...
We have analyzed the nanoscale organization of various polymer systems by utilizing high-angle annul...
Improving the performance of organic electronic devices depends on exploiting the complex nanostruct...
We reveal nanoscale information of semi-crystalline polypropylene with the use of a new secondary el...
We reveal nanoscale information of semi-crystalline polypropyl-ene with the use of a new secondary e...
Organic solar cells using carbon based materials have the potential to deliver cheap solar electrici...
Morphology of organic photovoltaic bulk heterojunctions (BHJs) - a nanoscale texture of the donor an...
In this thesis, a range of new techniques are developed in the scanning electron microscope (SEM) fo...
Finding the optimal morphology of novel organic photovoltaic (OPV) polymer blends is a major obstacl...
With organic photovoltaic (OPV) technology moving towards commercialisation, high-throughput analyti...
The success of semiconducting organic materials has enabled green technologies for electronics, ligh...
Understanding nanoscale molecular order within organic electronic materials is a crucial factor in b...
AbstractUsing analytical transmission electron microscopy, we investigated spectral images of blends...
Energy-filtered backscattered electron imaging in a scanning electron microscope is performed on a b...
Understanding nanoscale molecular order within organic electronic materials is a crucial factor in b...
International audienceThe efficiency of organic solar cells with donor polymers and non-fullerene ac...
We have analyzed the nanoscale organization of various polymer systems by utilizing high-angle annul...
Improving the performance of organic electronic devices depends on exploiting the complex nanostruct...
We reveal nanoscale information of semi-crystalline polypropylene with the use of a new secondary el...
We reveal nanoscale information of semi-crystalline polypropyl-ene with the use of a new secondary e...
Organic solar cells using carbon based materials have the potential to deliver cheap solar electrici...
Morphology of organic photovoltaic bulk heterojunctions (BHJs) - a nanoscale texture of the donor an...