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塑料上的石墨烯纳米浮栅晶体管存储器。

Graphene nano-floating gate transistor memory on plastic.

作者信息

Jang Sukjae, Hwang Euyheon, Cho Jeong Ho

机构信息

SKKU Advanced Institute of Nanotechnology (SAINT), Sungkyunkwan University, Suwon 440-746, Republic of Korea.

出版信息

Nanoscale. 2014 Dec 21;6(24):15286-92. doi: 10.1039/c4nr04117h. Epub 2014 Nov 10.

Abstract

A transparent flexible graphene nano-floating gate transistor memory (NFGTM) device was developed by combining a single-layer graphene active channel with gold nanoparticle (AuNP) charge trap elements. We systematically controlled the sizes of the AuNPs, the thickness of the tunneling dielectric layer, and the graphene doping level. In particular, we propose that the conductance difference (i.e., memory window) between the programming and erasing operations at a specific read gate voltage can be maximized through the doping. The resulting graphene NFGTMs developed here exhibited excellent programmable memory performances compared to previously reported graphene memory devices and displayed a large memory window (12 V), fast switching speed (1 μs), robust electrical reliability (10(5) s), and good mechanical (500 cycles) and thermal stability (100 °C).

摘要

通过将单层石墨烯有源通道与金纳米颗粒(AuNP)电荷俘获元件相结合,开发出了一种透明柔性石墨烯纳米浮栅晶体管存储器(NFGTM)器件。我们系统地控制了金纳米颗粒的尺寸、隧穿介电层的厚度以及石墨烯的掺杂水平。特别是,我们提出通过掺杂可以使在特定读取栅极电压下编程和擦除操作之间的电导差(即存储窗口)最大化。与先前报道的石墨烯存储器件相比,这里开发的石墨烯NFGTM表现出优异的可编程存储性能,具有大存储窗口(12 V)、快速开关速度(1 μs)、强大的电可靠性(10(5) s)以及良好的机械稳定性(500次循环)和热稳定性(100 °C)。

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