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Programmable ZnO nanowire transistors using switchable polarization of ferroelectric liquid crystal

机译:使用铁电液晶的可切换极化的可编程ZnO纳米线晶体管

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摘要

We demonstrate modulations of electrical conductance and hysteresis behavior in ZnO nanowire transistors via electrically polarized switching of ferroelectric liquid crystal (FLC). After coating a nanowire channel in the transistors with FLCs, we observed large increases in channel conductance and hysteresis width, and a strong dependence of hysteresis loops on the polarization states associated with the orientation of electric dipole moments along the direction of the gate electric field. Furthermore, the reversible switching and retention characteristics provide the feasibility of creating a hybrid system with switch and memory functions.
机译:我们通过铁电液晶(FLC)的电偏振开关演示了ZnO纳米线晶体管中电导率和磁滞行为的调制。在用FLC覆盖晶体管中的纳米线沟道后,我们观察到沟道电导和磁滞宽度大大增加,并且磁滞回线强烈依赖于极化态,极化态与沿栅极电场方向的电偶极矩方向相关。此外,可逆的切换和保持特性为创建具有切换和存储功能的混合系统提供了可行性。

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