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Memory Thin Film Transistor with Monolayered Nanoparticles through Chemical and Biological Bindings

机译:通过化学和生物结合的具有单层纳米颗粒的记忆薄膜晶体管

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To have an efficient monolayer of charging element in the memory OTFT, metallic or semiconductor nanoparticles (NPs) and surface of dielectric layers have been functionalized to accomplish specific binding mechanisms. In this study, using a strong chemical and biological binding system, polyaniline (PANI) NPs and Au NPs were monolayered between pentacene and organic dielectric layer in OTFT device. The PANI NPs were monolayered by epoxy-amine bonding and Au NPs were functionalized with streptavidin protein and the dielectric surface was modified by 3-amino-propyltriethoxysilane (APTES) and N-hydroxysuccinimide (NHS)-biotin. The memory OTFT can be applicable to develop a new conceptual device.
机译:为了在存储器OTFT中具有高效的单层充电元件,已经官能化以实现特异性结合机构的金属或半导体纳米颗粒(NPS)和介电层的表面。在本研究中,使用强化学和生物结合系统,在OTFT装置中的五烯和有机介电层之间单独制剂聚苯胺(PANI)NPS和Au NP。通过环氧 - 胺键合单独制剂的Pani NPS,用链霉蛋白蛋白蛋白官能化,并通过3-氨基 - 丙基三乙氧基硅烷(Aptes)和N-羟基琥珀酰亚胺(NHS) - 苯脲改变介电表面。内存OTFT可以适用于开发新的概念设备。

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