石墨烯
场效应晶体管
Nafion公司
晶体管
材料科学
纳米技术
光电子学
化学
电极
物理
电压
电化学
量子力学
物理化学
作者
Heqi Ma,Shuo Chen,Xinhao Zhang,Tianyu Sun,Panpan Huo,Xiangyong Cui,Baoyuan Man,Cheng Yang,Dongmei Wei
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-12-11
标识
DOI:10.1021/acs.nanolett.4c03989
摘要
The graphene field-effect transistor (GFET) biosensor serves as a foundational platform for detecting biomolecules, offering high conductivity, label-free operation, and easy integration. These features have garnered significant attention in biomarker detection. However, the presence of free cations in solution often leads to electrostatic shielding of negatively charged biomolecules, reducing GFET detection sensitivity (LOD ≥ 1 fM). Additionally, the limited capacitance change in GFET restricts its use as a response signal. This study introduces a cation enrichment electric field modulation strategy (CEEFMS) to enhance capacitance and Dirac voltage response during detection. The cation-enriched rough Nafion/graphene FET (CENG-FET) achieves RNA detection at the aM level. Utilizing total capacitance change and Dirac voltage shift as response signals, the CENG-FET demonstrates a wide linear range from 1 aM to 1 pM. These findings advance dual-signal detection strategies, reducing accidental inaccuracies in biomolecular sensing and paving the way for further research.
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