The availability of a reliable memory element is crucial for the fabrication of ‘plastic’ logic circuits. We use numerical simulations to show that the switching mechanism of ferroelectric-driven organic resistive switches is the stray field of the polarized ferroelectric phase. The stray field modulates the charge injection from a metallic electrode into the organic semiconductor, switching the diode from injection limited to space charge limited. The modeling rationalizes the previously observed exponential dependence of the on/off ratio on injection barrier height. We find a lower limit of about 50 nm for the feature size that can be used in a crossbar array, translating into a rewritable memory with an information density of the order o...
Organic ferroelectric resistive switches function by grace of nanoscale phase separation in a blend ...
Organic ferroelectric resistive switches function by grace of nanoscale phase separation in a blend ...
Organic ferroelectric resistive switches function by grace of nanoscale phase separation in a blend ...
The availability of a reliable memory element is crucial for the fabrication of ‘plastic’ logic circ...
The availability of a reliable memory element is crucial for the fabrication of ‘plastic’ logic circ...
The availability of a reliable memory element is crucial for the fabrication of ‘plastic’ logic circ...
The availability of a reliable memory element is crucial for the fabrication of ‘plastic’ logic circ...
The availability of a reliable memory element is crucial for the fabrication of ‘plastic’ logic circ...
The availability of a reliable memory element is crucial for the fabrication of ‘plastic’ logic circ...
The availability of a reliable memory element is crucial for the fabrication of 'plastic' logic circ...
The availability of a reliable memory element is crucial for the fabrication of 'plastic' logic circ...
The availability of a reliable memory element is crucial for the fabrication of 'plastic' logic circ...
The availability of a reliable memory element is crucial for the fabrication of 'plastic' logic circ...
Organic ferroelectric resistive switches function by grace of nanoscale phase separation in a blend ...
Organic ferroelectric resistive switches function by grace of nanoscale phase separation in a blend ...
Organic ferroelectric resistive switches function by grace of nanoscale phase separation in a blend ...
Organic ferroelectric resistive switches function by grace of nanoscale phase separation in a blend ...
Organic ferroelectric resistive switches function by grace of nanoscale phase separation in a blend ...
The availability of a reliable memory element is crucial for the fabrication of ‘plastic’ logic circ...
The availability of a reliable memory element is crucial for the fabrication of ‘plastic’ logic circ...
The availability of a reliable memory element is crucial for the fabrication of ‘plastic’ logic circ...
The availability of a reliable memory element is crucial for the fabrication of ‘plastic’ logic circ...
The availability of a reliable memory element is crucial for the fabrication of ‘plastic’ logic circ...
The availability of a reliable memory element is crucial for the fabrication of ‘plastic’ logic circ...
The availability of a reliable memory element is crucial for the fabrication of 'plastic' logic circ...
The availability of a reliable memory element is crucial for the fabrication of 'plastic' logic circ...
The availability of a reliable memory element is crucial for the fabrication of 'plastic' logic circ...
The availability of a reliable memory element is crucial for the fabrication of 'plastic' logic circ...
Organic ferroelectric resistive switches function by grace of nanoscale phase separation in a blend ...
Organic ferroelectric resistive switches function by grace of nanoscale phase separation in a blend ...
Organic ferroelectric resistive switches function by grace of nanoscale phase separation in a blend ...
Organic ferroelectric resistive switches function by grace of nanoscale phase separation in a blend ...
Organic ferroelectric resistive switches function by grace of nanoscale phase separation in a blend ...