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Nanoscale organic and polymeric field-effect transistors as chemical sensors

机译:纳米级有机和聚合物场效应晶体管作为化学传感器

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This article reviews recently published work concerning improved understanding of, and advancements in, organic and polymer semiconductor vapor-phase chemical sensing. Thin-film transistor sensors ranging in size from hundreds of microns down to a few nanometers are discussed, with comparisons made of sensing responses recorded at these different channel-length scales. The vapor-sensing behavior of nanoscale organic transistors is different from that of large-scale devices, because electrical transport in a nanoscale organic thin-film transistor depends on its morphological structure and interface properties (for example injection barrier) which could be modulated by delivery of analyte. Materials used in nanoscale devices, for example nanoparticles, nanotubes, and nanowires, are also briefly summarized in an attempt to introduce other relevant nano-transducers.
机译:本文回顾了最近发表的有关提高对有机和聚合物半导体气相化学传感的理解和发展的工作。讨论了尺寸从几百微米到几纳米的薄膜晶体管传感器,并比较了在这些不同通道长度尺度下记录的传感响应。纳米级有机晶体管的蒸气感测行为与大型器件不同,这是因为纳米级有机薄膜晶体管的电传输取决于其形态结构和界面特性(例如注入势垒),可以通过传递来调节分析物。还简要总结了用于纳米级装置的材料,例如纳米粒子,纳米管和纳米线,以试图引入其他相关的纳米换能器。

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