Rapid nanoscale imaging of the bulk heterojunction layer in organic solar cells is essential to the continued development of high-performance devices. Unfortunately, commonly used imaging techniques such as tunneling electron microscopy (TEM) and atomic force microscopy (AFM) suffer from significant drawbacks. For instance, assuming domain identity from phase contrast or topographical features can lead to inaccurate morphological conclusions. Here we demonstrate a technique known as photo-induced force microscopy (PiFM) for imaging organic solar cell bulk heterojunctions with nanoscale chemical specificity. PiFM is a relatively recent scanning probe microscopy technique that combines an AFM tip with a tunable infrared laser to induce a dipo...
A key parameter to improve the performance of organic solar cells is the optimization of electronic ...
AbstractThe application of electrical modes in scanning probe microscopy helps to understand the ele...
Self-assembled donor–acceptor dyads are used as model nanostructured heterojunctions for local inves...
Rapid nanoscale imaging of the bulk heterojunction layer in organic solar cells is essential to the ...
The efficiency of organic bulk-heterojunction (BHJ) solar cells depends greatly on both the bulk and...
© 2018, Pleiades Publishing, Ltd. A method for visualization via atomic-force microscopy of the inte...
Correlating spatial chemical information with the morphology of closely packed nanostructures remain...
Abstract Enormous research effort has been put into optimizing organic-based opto-electronic systems...
Polymer solar cells have the potential to become a major electrical power generating tool in the twe...
Organic solar cells hold promise as an economical means of harvesting solar energy due to their ease...
Direct imaging of the bulk heterojunction (BHJ) thin film morphology in polymer-based solar cells is...
Here, correlated AFM and scanning Kelvin probe microscopy measurements with sub-100 nm resolution on...
Control of the nanoscale morphology of the donor\ue2ˆ’acceptor material blends in organic solar cell...
In this article, we developed a new nano spectroscopic technique, peak force visible (PF-vis) micros...
Optimizing the morphology of bulk heterojunctions is known to significantly improve the photovoltaic...
A key parameter to improve the performance of organic solar cells is the optimization of electronic ...
AbstractThe application of electrical modes in scanning probe microscopy helps to understand the ele...
Self-assembled donor–acceptor dyads are used as model nanostructured heterojunctions for local inves...
Rapid nanoscale imaging of the bulk heterojunction layer in organic solar cells is essential to the ...
The efficiency of organic bulk-heterojunction (BHJ) solar cells depends greatly on both the bulk and...
© 2018, Pleiades Publishing, Ltd. A method for visualization via atomic-force microscopy of the inte...
Correlating spatial chemical information with the morphology of closely packed nanostructures remain...
Abstract Enormous research effort has been put into optimizing organic-based opto-electronic systems...
Polymer solar cells have the potential to become a major electrical power generating tool in the twe...
Organic solar cells hold promise as an economical means of harvesting solar energy due to their ease...
Direct imaging of the bulk heterojunction (BHJ) thin film morphology in polymer-based solar cells is...
Here, correlated AFM and scanning Kelvin probe microscopy measurements with sub-100 nm resolution on...
Control of the nanoscale morphology of the donor\ue2ˆ’acceptor material blends in organic solar cell...
In this article, we developed a new nano spectroscopic technique, peak force visible (PF-vis) micros...
Optimizing the morphology of bulk heterojunctions is known to significantly improve the photovoltaic...
A key parameter to improve the performance of organic solar cells is the optimization of electronic ...
AbstractThe application of electrical modes in scanning probe microscopy helps to understand the ele...
Self-assembled donor–acceptor dyads are used as model nanostructured heterojunctions for local inves...