Understanding nanoscale molecular order within organic electronic materials is a crucial factor in building better organic electronic devices. At present, techniques capable of imaging molecular order within a polymer are limited in resolution, accuracy, and accessibility. In this work, presented are secondary electron (SE) spectroscopy and secondary electron hyperspectral imaging, which make an exciting alternative approach to probing molecular ordering in poly(3-hexylthiophene) (P3HT) with scanning electron microscope-enabled resolution. It is demonstrated that the crystalline content of a P3HT film is reflected by its SE energy spectrum, both empirically and through correlation with nano-Fourier-transform infrared spectroscopy, an innova...
A novel capability built upon secondary electron (SE) spectroscopy provides an enhanced cross‐linkin...
The distributions of methylene and ether bridges have been shown to impact the mechanical properties...
Poly(3-hexylthiophene) (P3HT) assemblies in vitrified organic solvents were visualized at nanometer ...
Understanding nanoscale molecular order within organic electronic materials is a crucial factor in b...
Understanding nanoscale molecular order within organic electronic materials is a crucial factor in b...
The nano-scale dispersion of ordered/disordered phases in semi-crystalline polymers can strongly inf...
The nano-scale dispersion of ordered/disordered phases in semi-crystalline polymers can strongly inf...
The nano-scale dispersion of ordered/disordered phases in semi-crystalline polymers can strongly in...
We reveal nanoscale information of semi-crystalline polypropylene with the use of a new secondary el...
Improving the performance of organic electronic devices depends on exploiting the complex nanostruct...
We reveal nanoscale information of semi-crystalline polypropyl-ene with the use of a new secondary e...
The resolution capability of the scanning electron microscope has increased immensely in recent year...
A method for imaging the semi-crystalline structure of organic, electrically conduct- ing molecular ...
AbstractUsing analytical transmission electron microscopy, we investigated spectral images of blends...
Structure-function relationships in supramolecular systems depend on the spatial distribution of mol...
A novel capability built upon secondary electron (SE) spectroscopy provides an enhanced cross‐linkin...
The distributions of methylene and ether bridges have been shown to impact the mechanical properties...
Poly(3-hexylthiophene) (P3HT) assemblies in vitrified organic solvents were visualized at nanometer ...
Understanding nanoscale molecular order within organic electronic materials is a crucial factor in b...
Understanding nanoscale molecular order within organic electronic materials is a crucial factor in b...
The nano-scale dispersion of ordered/disordered phases in semi-crystalline polymers can strongly inf...
The nano-scale dispersion of ordered/disordered phases in semi-crystalline polymers can strongly inf...
The nano-scale dispersion of ordered/disordered phases in semi-crystalline polymers can strongly in...
We reveal nanoscale information of semi-crystalline polypropylene with the use of a new secondary el...
Improving the performance of organic electronic devices depends on exploiting the complex nanostruct...
We reveal nanoscale information of semi-crystalline polypropyl-ene with the use of a new secondary e...
The resolution capability of the scanning electron microscope has increased immensely in recent year...
A method for imaging the semi-crystalline structure of organic, electrically conduct- ing molecular ...
AbstractUsing analytical transmission electron microscopy, we investigated spectral images of blends...
Structure-function relationships in supramolecular systems depend on the spatial distribution of mol...
A novel capability built upon secondary electron (SE) spectroscopy provides an enhanced cross‐linkin...
The distributions of methylene and ether bridges have been shown to impact the mechanical properties...
Poly(3-hexylthiophene) (P3HT) assemblies in vitrified organic solvents were visualized at nanometer ...