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- W76134479 abstract "As miniaturization of advanced CMOS device is approaching its fundamental physical limit, emerging electrically configurable devices which can modify its function dynamically and adaptively can arm existing CMOS circuitry with more versatile function, and are essential for reconfigurable computing and intelligent neural circuit. Organic semiconductors have the flexibility to change its electrical properties by changing its dopant concentration. Controllable ionic doping in conductive polymers has been realized and utilized to make electrically configurable devices for intelligent neuromorphic applications. First, a nonvolatile organic memory made of dopant configurable polymers has been demonstrated and showed controllable and repeatable conductance switching and nonvolatile characteristics. A 16x16 crossbar network composed of configurable switching devices has been fabricated and has successfully demonstrated its application on associative memory which can memorize and recognize learned pattern even with extra or missing features. An organic/Si hybrid field configurable transistor (FCT) has been fabricated on a Si nanowire FET platform by integrating the dopant configurable polymer into the gate structure. The FCT can be precisely configured to desired nonvolatile analog state dynamically, repeatedly, and reversibly by controlling the concentration of ions dopants in the polymer with a gate voltage. The flexible configurability and plasticity of the FCT could facilitate field-programmable circuits for defect-tolerance and synapse-like devices for dynamic learning. Further investigation on this ion-doped polymer showed the voltage modulation of the ionic charge concentration and dipole moment concentration in the polymer which contributed to a new electric device-a memory capacitor. This ionic transport in the polymer can lead to the time-dependent electrical property of the FCT (a synaptic transistor), which has demonstrated the first time synapse-like spiking time dependent plasticity (STDP) in a single electronic device." @default.
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- W76134479 date "2009-01-01" @default.
- W76134479 modified "2023-09-24" @default.
- W76134479 title "Electrically configurable materials and devices for intelligent neuromorphic applications" @default.
- W76134479 hasPublicationYear "2009" @default.
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