石墨烯
德拜长度
纳米技术
电解质
材料科学
场效应晶体管
生物分子
晶体管
表面改性
光电子学
电极
离子
化学
电气工程
工程类
物理化学
电压
有机化学
作者
Juliana Scotto,Wolfgang Knoll,Waldemar A. Marmisollé,Omar Azzaroni
标识
DOI:10.1002/9783527843374.ch12
摘要
Electrolyte-gated graphene-based field-effect transistors (GFETS) are emerging as unique sensing platforms that can offer real-time, cost-effective, and label-free detection of biomolecules with high specificity and selectivity, as well as the in situ monitoring of the dynamics of biorecognition events in real samples. However, operating in biological media still has the challenge of overcoming the screening limitations due to the short Debye length in physiological high-ionic strength conditions. In this regard, many strategies have been developed to extend the sensing length, including the modification of the graphene surface with polymers, lipids, or mesoporous materials. In this chapter, these strategies will be discussed as well as the mechanisms involved in the enhancement of the field-effect sensing signal.
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