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Hybrid porphyrin-silicon nanowire field-effect transistor by opto-electrical excitation

机译:光电激励混合卟啉-硅纳米线场效应晶体管

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摘要

A porphyrin-silicon nanowire (Si-NW) hybrid field-effect transistor is introduced. The hybrid device has separate electrical and optical gates surrounding the Si-NW channel. Porphyrin, a component of chlorophyll, is employed as an optical gate to modulate the potential of the Si-NW channel. Due to the independently formed hybrid gates, both optical and electrical excitation can effectively modulate the device. The exposed porphyrin optical gate responds to the optical excitation, and independently formed electrical gates respond to the electrical excitation. Charge transfer characteristics between a semiconductor channel and the porphyrin optical gate are deeply investigated. Optical, electrical, and opto-electrical excitation methods are employed to analyze the charging and discharging behaviors. Of these methods, opto-electrical excitation enables the strongest charge transfer because the inversion electron formation by an electrical pulse and the photoinduced charge transfer by an optical stimulus are affected simultaneously. Discharging processes, such as rapid discharging, exponential detrapping, and the formation of metastable states are also analyzed.
机译:介绍了一种卟啉-硅纳米线(Si-NW)混合场效应晶体管。混合设备具有围绕Si-NW通道的单独的电和光门。卟啉是叶绿素的一种成分,被用作光闸以调节Si-NW通道的电势。由于独立形成的混合栅极,光激发和电激发都可以有效地调制器件。暴露的卟啉光闸响应光激发,独立形成的电闸响应电激发。深入研究了半导体通道和卟啉光闸之间的电荷转移特性。采用光,电和光电激励方法来分析充电和放电行为。在这些方法中,光电激励能够实现最强的电荷转移,因为电脉冲的反转电子形成和光学刺激的光诱导电荷转移会同时受到影响。还分析了放电过程,例如快速放电,指数脱陷和亚稳态的形成。

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