In organic field-effect transistors (OFETs), the morphological structure of the active layer is one of the main parameters that influence its charge transport properties and thus the functioning of the device. To understand this relationship, it is desirable to have techniques able to locally probe the electronic properties along the channel of a working device. In this contribution we show that with Charge Modulation Microscopy (CMM) it is possible to optically map the charge density in a high-mobility n-type OFET with a lateral resolution of about 500 nm; this is achieved by measuring the local polaronic absorption and bleaching features in a laser scanning confocal microscope. Interestingly, the signal is sensible only to the few-nanomet...
A novel method for mapping the charge density spatial distribution in organic field-effect transisto...
A novel method for mapping the charge density spatial distribution in organic field-effect transisto...
A novel method for mapping the charge density spatial distribution in organic field-effect transisto...
In organic field-effect transistors (OFETs), the morphological structure of the active layer is one ...
In organic field-effect transistors (OFETs), the morphological structure of the active layer is one ...
The morphology of the thin active layer is one of the main parameters that influence charge transpor...
The morphology of the thin active layer is one of the main parameters that influence charge transpor...
The morphology of the thin active layer is one of the main parameters that influence charge transpor...
The morphology of the thin active layer is one of the main parameters that influence charge transpor...
Structure–property relationships are of fundamental importance to develop quantitative models descri...
Structure–property relationships are of fundamental importance to develop quantitative models descri...
Structure–property relationships are of fundamental importance to develop quantitative models descri...
We implemented spatial mapping of charge carrier density in the channel of a conventional polymer Fi...
Charge modulation spectroscopy (CMS) is an electrical pump-optical probe technique for the in situ p...
Charge modulation spectroscopy (CMS) is an electrical pump-optical probe technique for the in situ p...
A novel method for mapping the charge density spatial distribution in organic field-effect transisto...
A novel method for mapping the charge density spatial distribution in organic field-effect transisto...
A novel method for mapping the charge density spatial distribution in organic field-effect transisto...
In organic field-effect transistors (OFETs), the morphological structure of the active layer is one ...
In organic field-effect transistors (OFETs), the morphological structure of the active layer is one ...
The morphology of the thin active layer is one of the main parameters that influence charge transpor...
The morphology of the thin active layer is one of the main parameters that influence charge transpor...
The morphology of the thin active layer is one of the main parameters that influence charge transpor...
The morphology of the thin active layer is one of the main parameters that influence charge transpor...
Structure–property relationships are of fundamental importance to develop quantitative models descri...
Structure–property relationships are of fundamental importance to develop quantitative models descri...
Structure–property relationships are of fundamental importance to develop quantitative models descri...
We implemented spatial mapping of charge carrier density in the channel of a conventional polymer Fi...
Charge modulation spectroscopy (CMS) is an electrical pump-optical probe technique for the in situ p...
Charge modulation spectroscopy (CMS) is an electrical pump-optical probe technique for the in situ p...
A novel method for mapping the charge density spatial distribution in organic field-effect transisto...
A novel method for mapping the charge density spatial distribution in organic field-effect transisto...
A novel method for mapping the charge density spatial distribution in organic field-effect transisto...