膜蛋白嵌入支持脂双分子层用于场效应电子器件

M. D. Angione, A. Mallardi, G. Romanazzi, G. Suranna, P. Mastrorilli, D. Cafagna, E. De Giglio, G. Palazzo, L. Torsi
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引用次数: 5

摘要

制作了一种新型的底栅顶接触OTFT结构。在该装置中,从球形红杆菌中提取的光合膜蛋白包埋在有机半导体膜(α,ω-二己基六噻吩)上的脂质双层结构在源、干金触点蒸发之前被沉积在有机半导体膜上。提取了该装置的优点数字,并与没有生物膜的相同OTFT的优点数字进行了比较。脂质双分子层OTFT的场效应迁移率(µ)仅略低,为µ=0.007 cm2/Vs。这一结果为开发新型高灵敏度、高选择性除草剂传感器奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Membrane proteins embedded in supported lipid bilayers employed in field effect electronic devices
A novel bottom-gate top-contact OTFT architecture has been fabricated. In this device, a lipid bilayer structure embedding a photosynthetic membrane protein extracted from Rhodobacter Sphaeroides has been deposited onto the organic semiconductor film (α,ω-dihexylsexythiophene) prior to the evaporation of source and drain gold contacts. The figures of merit of this device were extracted and compared to those obtained for the same OTFT devoid of the biological film. Only slightly lower performances in terms of field-effect mobility (µ) were observed for the lipid bilayer OTFT that exhibits µ=0.007 cm2/Vs. This result constitutes a preliminary important starting point towards the development of novel highly sensitive and selective herbicides sensors.
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