The polymer phase separation of P(VDF-TrFE):F8BT blends is studied in detail. Its morphology is key to the operation and performance of memory diodes. In this study, it is demonstrated that it is possible to direct the semiconducting domains of a phase-separating mixture of P(VDF-TrFE) and F8BT in a thin film into a highly ordered 2D lattice by means of surface directed phase separation. Numerical simulation of the surface-controlled de-mixing process provides insight in the ability of the substrate pattern to direct the phase separation, and hence the regularity of the domain pattern in the final dry blend layer. By optimizing the ratio of the blend components, the number of electrically active semiconductor domains is maximized. Pattern r...
Resistive switches have been fabricated using a phase-separated blend film of ferroelectric random c...
New non-volatile memories are being investigated to keep up with the organic-electronics road map(1)...
This article describes a combined experimental and theoretical study on nanophase structure developm...
The polymer phase separation of P(VDF-TrFE):F8BT blends is studied in detail. Its morphology is key ...
The processing of solution-based binary blends of the ferroelectric random copolymer poly(vinylidene...
The processing of solution-based binary blends of the ferroelectric random copolymer poly(vinylidene...
In many organic electronic devices functionality is achieved by blending two or more materials, typi...
Side chain modification of a semiconducting polythiophene changes the resulting phase separation len...
The phase-separated structure of blends of the ferroelectric polymer P(VDF-TrFE) and the semiconduct...
In many organic electronic devices functionality is achieved by blending two or more materials, typi...
The phase-separated structure of blends of the ferroelectric polymer P(VDF-TrFE) and the semiconduct...
Resistive switches have been fabricated using a phase-separated blend film of ferroelectric random c...
Resistive switches have been fabricated using a phase-separated blend film of ferroelectric random c...
New non-volatile memories are being investigated to keep up with the organic-electronics road map(1)...
This article describes a combined experimental and theoretical study on nanophase structure developm...
The polymer phase separation of P(VDF-TrFE):F8BT blends is studied in detail. Its morphology is key ...
The processing of solution-based binary blends of the ferroelectric random copolymer poly(vinylidene...
The processing of solution-based binary blends of the ferroelectric random copolymer poly(vinylidene...
In many organic electronic devices functionality is achieved by blending two or more materials, typi...
Side chain modification of a semiconducting polythiophene changes the resulting phase separation len...
The phase-separated structure of blends of the ferroelectric polymer P(VDF-TrFE) and the semiconduct...
In many organic electronic devices functionality is achieved by blending two or more materials, typi...
The phase-separated structure of blends of the ferroelectric polymer P(VDF-TrFE) and the semiconduct...
Resistive switches have been fabricated using a phase-separated blend film of ferroelectric random c...
Resistive switches have been fabricated using a phase-separated blend film of ferroelectric random c...
New non-volatile memories are being investigated to keep up with the organic-electronics road map(1)...
This article describes a combined experimental and theoretical study on nanophase structure developm...