CuTCNQ is an organic semiconductor charge transfer material that allows the realization of non-volatile cross-bar memory arrays with conductivity switching. In this work, we present a simple preparation method of this organic memory material, compatible with industrial processing and downsizing of the memory cells. CuTCNQ nanowires were prepared on Cu by a solid-gas phase corrosion reaction between the metal and hot TCNQ gas at low pressure. Surface coverage increased with reaction time and temperature. Cu/CuTCNQ/Al cross-point cell arrays with memory areas of 0.01 mm2 exhibited I-V curves with ON/OFF current ratios of about 10. Further downscaling of the CuTCNQ nanowire memory elements was successful on top of 0.25 μm2 copper-filled vias. ...
We report on a low-temperature fabrication of organic-inorganic nanohybrid nonvolatile memory transi...
While organic semiconductors provide tantalizing possibilities for low-cost, light-weight, flexible ...
The electrical behaviour of organic memory structures, based on single-walled carbon-nanotubes (SWCN...
Nanowires of the organometallic semiconductor CuTCNQ were grown from TCNQ vapor in 250 nm diameter v...
CuTCNQ (TCNQ=7,7,8,8-tetracyanoquinodimethane) is a resistive switching charge-transfer complex whic...
Electrodeposition experiments of the charge-transfer complex copper tetracyanoquinodimethane (CuTCNQ...
Thin films and nanowires based on an organometallic material Ag-TCNQ were prepared. Electrical prope...
We demonstrate the modification of the memory effect in organic memory devices by adjusting the thic...
A host of new solid-state memory technologies are currently being developed as potential low-cost, h...
In this letter, we investigate bipolar resistive switching of CuTCNQ-based memory cells in which var...
The possibility of developing fully organic electronic circuits is critically dependent on the abili...
We found novel organic charge-transfer salts that exhibit reversible resistive memory switching phen...
Recently, organic nonvolatile memory devices have attracted considerable attention due to their low ...
In this letter, we investigate bipolar resistive switching of CuTCNQ-based memory cells in which var...
Ag-tetracyanoquinodimethane (Ag-TCNQ) nanostructures are synthesized using both solution reaction in...
We report on a low-temperature fabrication of organic-inorganic nanohybrid nonvolatile memory transi...
While organic semiconductors provide tantalizing possibilities for low-cost, light-weight, flexible ...
The electrical behaviour of organic memory structures, based on single-walled carbon-nanotubes (SWCN...
Nanowires of the organometallic semiconductor CuTCNQ were grown from TCNQ vapor in 250 nm diameter v...
CuTCNQ (TCNQ=7,7,8,8-tetracyanoquinodimethane) is a resistive switching charge-transfer complex whic...
Electrodeposition experiments of the charge-transfer complex copper tetracyanoquinodimethane (CuTCNQ...
Thin films and nanowires based on an organometallic material Ag-TCNQ were prepared. Electrical prope...
We demonstrate the modification of the memory effect in organic memory devices by adjusting the thic...
A host of new solid-state memory technologies are currently being developed as potential low-cost, h...
In this letter, we investigate bipolar resistive switching of CuTCNQ-based memory cells in which var...
The possibility of developing fully organic electronic circuits is critically dependent on the abili...
We found novel organic charge-transfer salts that exhibit reversible resistive memory switching phen...
Recently, organic nonvolatile memory devices have attracted considerable attention due to their low ...
In this letter, we investigate bipolar resistive switching of CuTCNQ-based memory cells in which var...
Ag-tetracyanoquinodimethane (Ag-TCNQ) nanostructures are synthesized using both solution reaction in...
We report on a low-temperature fabrication of organic-inorganic nanohybrid nonvolatile memory transi...
While organic semiconductors provide tantalizing possibilities for low-cost, light-weight, flexible ...
The electrical behaviour of organic memory structures, based on single-walled carbon-nanotubes (SWCN...