The electrical behavior of organic memory devices based on pentacene thin film transistor using polymethylmethacrylate (PMMA) as the gate dielectric is reported. Memory behaviors based on incorporating a layer of thermally evaporated metallic floating gate are demonstrated. The gate electrode was made from 50 nm evaporated aluminum on glass substrate, and the drain and source electrodes were fabricated by evaporating 50 nm gold. The effects of the insulator thickness on the stability of pentacene layer are also investigated. The memory transistors containing the floating gate exhibited clear hysteresis in their electrical characteristics (output and transfer characteristics). Under an appropriate gate bias (2 s pulses), the floating gate is...
Organic thin-film transistor memory based on nano-floating-gate nonvolatile memory was demonstrated ...
As one of the most emerging next-generation nonvolatile memories, one-transistor (1T)-type nonvolati...
The possibility of developing fully organic electronic circuits is critically dependent on the abili...
The electrical behavior of organic memory devices based on pentacene thin film transistor using poly...
The electrical behavior of organic memory devices based on pentacene thin film transistor using poly...
The electrical behavior of an organic memory device based on a pentacene thin film metal-insulator-s...
A systematic approach has been used to optimise the fabrication process of pentacene-based nonvolati...
An organic thin-film transistor memory, based on the pentacene semiconductor/nanoparticle-Al floatin...
We demonstrated a low-operation-voltage pentacene organic thin-film transistor (OTFT) with an ultrat...
Organic thin-film transistor memory devices were realized by inserting a layer of nanoparticles (suc...
An organic nonvolatile thin-film transistor memory is demonstrated by an inset complex layer between...
The electrical behaviour of organic memory structures, based on single-walled carbon-nanotubes (SWCN...
The electrical behaviour of organic memory structures, based on single-walled carbon-nanotubes (SWCN...
This thesis describes a study of pentacene-based organic electronic devices with poly(methyl methacr...
Organic thin film transistors (TFT) are an attractive option for low cost electronic applications an...
Organic thin-film transistor memory based on nano-floating-gate nonvolatile memory was demonstrated ...
As one of the most emerging next-generation nonvolatile memories, one-transistor (1T)-type nonvolati...
The possibility of developing fully organic electronic circuits is critically dependent on the abili...
The electrical behavior of organic memory devices based on pentacene thin film transistor using poly...
The electrical behavior of organic memory devices based on pentacene thin film transistor using poly...
The electrical behavior of an organic memory device based on a pentacene thin film metal-insulator-s...
A systematic approach has been used to optimise the fabrication process of pentacene-based nonvolati...
An organic thin-film transistor memory, based on the pentacene semiconductor/nanoparticle-Al floatin...
We demonstrated a low-operation-voltage pentacene organic thin-film transistor (OTFT) with an ultrat...
Organic thin-film transistor memory devices were realized by inserting a layer of nanoparticles (suc...
An organic nonvolatile thin-film transistor memory is demonstrated by an inset complex layer between...
The electrical behaviour of organic memory structures, based on single-walled carbon-nanotubes (SWCN...
The electrical behaviour of organic memory structures, based on single-walled carbon-nanotubes (SWCN...
This thesis describes a study of pentacene-based organic electronic devices with poly(methyl methacr...
Organic thin film transistors (TFT) are an attractive option for low cost electronic applications an...
Organic thin-film transistor memory based on nano-floating-gate nonvolatile memory was demonstrated ...
As one of the most emerging next-generation nonvolatile memories, one-transistor (1T)-type nonvolati...
The possibility of developing fully organic electronic circuits is critically dependent on the abili...