We disclose a supramolecular material that combines semiconducting and dipolar functionalities. The material consists of a discotic semiconducting carbonyl-bridged triarylamine core, which is surrounded by three dipolar amide groups. In thin films, the material self-organizes in a hexagonal columnar fashion through π-stacking of the molecular core and hydrogen bonding between the amide groups. Alignment by an electrical field in a simple metal/semiconductor/metal geometry induces a polar order in the interface layers near the metal contacts that can be reversibly switched, while the bulk material remains nonpolarized. On suitably chosen electrodes, the presence of an interfacial polarization field leads to a modulation of the barrier for ch...
Two conjugated small molecules with different molecular length, DPAPIT and DPAPPD, in which an elect...
New non-volatile memories are being investigated to keep up with the organic-electronics road map. F...
International audienceNowadays, the unrelenting growth of the digital universe calls for radically n...
We disclose a supramolecular material that combines semiconducting and dipolar functionalities. The ...
We disclose a supramolecular material that combines semiconducting and dipolar functionalities. The ...
We have demonstrated conductance switching between multilevel states in devices based on Rose Bengal...
Single-layer devices based on Rose Bengal show large conductance switching between the on and off st...
A reversible and reproducible bistable electrical memory switching phenomenon was observed in an asy...
Recently, organic nonvolatile memory devices have attracted considerable attention due to their low ...
We found novel organic charge-transfer salts that exhibit reversible resistive memory switching phen...
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...
Organic non-volatile resistive bistable diodes based on phase-separated blends of ferroelectric and ...
Organic non-volatile resistive bistable diodes based on phase-separated blends of ferroelectric and ...
We have observed a large electrical conductance switching (ON:OFF ratio = 105) in single-layer sandw...
Two conjugated small molecules with different molecular length, DPAPIT and DPAPPD, in which an elect...
New non-volatile memories are being investigated to keep up with the organic-electronics road map. F...
International audienceNowadays, the unrelenting growth of the digital universe calls for radically n...
We disclose a supramolecular material that combines semiconducting and dipolar functionalities. The ...
We disclose a supramolecular material that combines semiconducting and dipolar functionalities. The ...
We have demonstrated conductance switching between multilevel states in devices based on Rose Bengal...
Single-layer devices based on Rose Bengal show large conductance switching between the on and off st...
A reversible and reproducible bistable electrical memory switching phenomenon was observed in an asy...
Recently, organic nonvolatile memory devices have attracted considerable attention due to their low ...
We found novel organic charge-transfer salts that exhibit reversible resistive memory switching phen...
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...
Organic non-volatile resistive bistable diodes based on phase-separated blends of ferroelectric and ...
Organic non-volatile resistive bistable diodes based on phase-separated blends of ferroelectric and ...
We have observed a large electrical conductance switching (ON:OFF ratio = 105) in single-layer sandw...
Two conjugated small molecules with different molecular length, DPAPIT and DPAPPD, in which an elect...
New non-volatile memories are being investigated to keep up with the organic-electronics road map. F...
International audienceNowadays, the unrelenting growth of the digital universe calls for radically n...