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具有生物分子结合机制的金纳米颗粒存储器件中的充电效应。

Charging effect in Au nanoparticle memory device with biomolecule binding mechanism.

作者信息

Jung Sung Mok, Kim Hyung-Jun, Kim Bong-Jin, Yoon Tae-Sik, Kim Yong-Sang, Lee Hyun Ho

机构信息

Department of Chemical Enginnering, Myungji University, Gyeonggi Yongin 449-728, Korea.

出版信息

J Nanosci Nanotechnol. 2011 Jul;11(7):5698-701. doi: 10.1166/jnn.2011.4376.

Abstract

Organic memory device having gold nanoparticle (Au NPs) has been introduced in the structure of metal-pentacene-insulator-silicon (MPIS) capacitor device, where the Au NPs layer was formed by a new bonding method. Biomolecule binding mechanism between streptavidin and biotin was used as a strong binding method for the formation of monolayered Au NPs on polymeric dielectric of poly vinyl alcohol (PVA). The self-assembled Au NPs was functioned to show storages of charge in the MPIS device. The binding by streptavidin and biotin was confirmed by AFM and UV-VIS. The UV-VIS absorption of the Au NPs was varied at 515 nm and 525 nm depending on the coating of streptavidin. The AFM image showed no formation of multi-stacked layers of the streptavidin-capped Au NPs on biotin-NHS layer. Capacitance-voltage (C-V) performance of the memory device was measured to investigate the charging effect from Au NPs. In addition, charge retention by the Au NPs storage was tested to show 10,000 s in the C-V curve.

摘要

具有金纳米颗粒(Au NPs)的有机存储器件已被引入金属-并五苯-绝缘体-硅(MPIS)电容器器件的结构中,其中Au NPs层通过一种新的键合方法形成。链霉亲和素与生物素之间的生物分子结合机制被用作在聚乙烯醇(PVA)聚合物电介质上形成单层Au NPs的强结合方法。自组装的Au NPs在MPIS器件中起到存储电荷的作用。链霉亲和素与生物素的结合通过原子力显微镜(AFM)和紫外-可见光谱(UV-VIS)得到证实。Au NPs的UV-VIS吸收在515 nm和525 nm处随链霉亲和素涂层的变化而变化。AFM图像显示在生物素-NHS层上未形成链霉亲和素封端的Au NPs的多层堆叠。测量了存储器件的电容-电压(C-V)性能,以研究来自Au NPs的充电效应。此外,测试了Au NPs存储的电荷保持情况,在C-V曲线中显示为10000秒。

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