Organic memory devices based on silver nanoparticles (NPs) embedded into pentacene thin films are demonstrated. The memory effect is adjusted by varying the location of Ag NPs within the pentacene thin film, which is ascribed to the different trap densities. Maximum memory window of 90 V is obtained with the pentacene (15 nm)/Ag NPs (5 nm)/ pentacene (25 nm) configuration, which is three times larger than the conventional structure where the Ag NPs are directly deposited on the silicon dioxide. Hole trap mechanism dominates the hysteretic behavior and each nanoparticle contributes to around 20 traps states. These results show the potential application of such a structure in organic memory devices. © 2010 Elsevier B.V. All rights reserved.li...
Devices based on organic materials have the potential to overcome many of the fabrication problems a...
In this study, an organic memory structure having citrate-capped silicon nanoparticles (Si NPs) self...
244 p.The implementation of plastic electronic solutions to large area displays, flexible sensors, a...
We demonstrate the modification of the memory effect in organic memory devices by adjusting the thic...
We demonstrate the modification of the memory effect in organic memory devices by adjusting the thic...
In this paper, the controlled performance of a novel organic pentacene transistor memory device with...
Organic thin-film transistor memory devices were realized by inserting a layer of nanoparticles (suc...
Organic memories have a simple device design, offering the potential of uncomplicated integration an...
We demonstrate an organic memory-transistor device based on a pentacene-gold nanoparticles active la...
Organic non-volatile memory devices with significantly enhanced retention are explored with C-60 thi...
An organic thin-film transistor memory, based on the pentacene semiconductor/nanoparticle-Al floatin...
Author name used in this publication: C. W. LeungAuthor name used in this publication: P. K. L. Chan...
A systematic approach has been used to optimise the fabrication process of pentacene-based nonvolati...
Despite remarkable advances in the development of organic field-effect transistor (OFET) memories ov...
Pentacene based double nano-floating gate memories (NFGM) by using gold nanoparticles (Au NPs) and r...
Devices based on organic materials have the potential to overcome many of the fabrication problems a...
In this study, an organic memory structure having citrate-capped silicon nanoparticles (Si NPs) self...
244 p.The implementation of plastic electronic solutions to large area displays, flexible sensors, a...
We demonstrate the modification of the memory effect in organic memory devices by adjusting the thic...
We demonstrate the modification of the memory effect in organic memory devices by adjusting the thic...
In this paper, the controlled performance of a novel organic pentacene transistor memory device with...
Organic thin-film transistor memory devices were realized by inserting a layer of nanoparticles (suc...
Organic memories have a simple device design, offering the potential of uncomplicated integration an...
We demonstrate an organic memory-transistor device based on a pentacene-gold nanoparticles active la...
Organic non-volatile memory devices with significantly enhanced retention are explored with C-60 thi...
An organic thin-film transistor memory, based on the pentacene semiconductor/nanoparticle-Al floatin...
Author name used in this publication: C. W. LeungAuthor name used in this publication: P. K. L. Chan...
A systematic approach has been used to optimise the fabrication process of pentacene-based nonvolati...
Despite remarkable advances in the development of organic field-effect transistor (OFET) memories ov...
Pentacene based double nano-floating gate memories (NFGM) by using gold nanoparticles (Au NPs) and r...
Devices based on organic materials have the potential to overcome many of the fabrication problems a...
In this study, an organic memory structure having citrate-capped silicon nanoparticles (Si NPs) self...
244 p.The implementation of plastic electronic solutions to large area displays, flexible sensors, a...