We report on the development of hybrid organic-inorganic material-based flexible memristor devices made by a fast and simple electrochemical fabrication method. The devices consist of a bilayer of poly(methyl methacrylate) (PMMA) and Te-rich GeSbTe chalcogenide nanoscale thin films sandwiched between Ag top and TiN bottom electrodes on both Si and flexible polyimide substrates. These hybrid memristors require no electroforming process and exhibit reliable and reproducible bipolar resistive switching at low switching voltages under both flat and bending conditions. Multistate switching behavior can also be achieved by controlling the compliance current (CC). We attribute the switching between the high resistance state (HRS) and low resistanc...
Flexible electronic systems such as wearable devices, sensors and electronic skin require power sour...
Flexible nanoelectronics have attracted great attention due to interesting concepts such as wearable...
Recent commercialization efforts made in the fields of flexible sensors, low-energy Bluetooth transm...
We report on the development of hybrid organic−inorganic material-based flexible memristor devices m...
The electronics market is highly competitive and driven by consumers desire for the latest and most ...
Flexible memristors hold great promise for flexible electronics applications but are still lacking o...
Novel applications for memory devices demand nanoscale flexible structures. In particular, resistive...
This work was supported in part through the BK21 Program funded by Ministry of Education of Korea.He...
Driven by the innovation and growing demand for the information technologies, new non-volatile memor...
Conventionally, flexible and rigid electronics are produced separately using mask-based lithography ...
Despite nearly two decades of research, the absence of ideal flexible and transparent electrodes has...
The advent of flexible electronics has brought about rapid research towards sensors, bio implantable...
Conventionally, flexible and rigid electronics are produced separately using mask-based lithography ...
Today, the vast majority of microelectromechanical system (MEMS) sensors are mechanically rigid and ...
The discovery of conductive polymers in 1977 opened up a whole new path for flexible electronics. Co...
Flexible electronic systems such as wearable devices, sensors and electronic skin require power sour...
Flexible nanoelectronics have attracted great attention due to interesting concepts such as wearable...
Recent commercialization efforts made in the fields of flexible sensors, low-energy Bluetooth transm...
We report on the development of hybrid organic−inorganic material-based flexible memristor devices m...
The electronics market is highly competitive and driven by consumers desire for the latest and most ...
Flexible memristors hold great promise for flexible electronics applications but are still lacking o...
Novel applications for memory devices demand nanoscale flexible structures. In particular, resistive...
This work was supported in part through the BK21 Program funded by Ministry of Education of Korea.He...
Driven by the innovation and growing demand for the information technologies, new non-volatile memor...
Conventionally, flexible and rigid electronics are produced separately using mask-based lithography ...
Despite nearly two decades of research, the absence of ideal flexible and transparent electrodes has...
The advent of flexible electronics has brought about rapid research towards sensors, bio implantable...
Conventionally, flexible and rigid electronics are produced separately using mask-based lithography ...
Today, the vast majority of microelectromechanical system (MEMS) sensors are mechanically rigid and ...
The discovery of conductive polymers in 1977 opened up a whole new path for flexible electronics. Co...
Flexible electronic systems such as wearable devices, sensors and electronic skin require power sour...
Flexible nanoelectronics have attracted great attention due to interesting concepts such as wearable...
Recent commercialization efforts made in the fields of flexible sensors, low-energy Bluetooth transm...