适体
生物传感器
德拜长度
场效应晶体管
纳米技术
材料科学
晶体管
制作
小分子
表面改性
离子键合
离子强度
纳米
光电子学
化学
离子
电气工程
电压
工程类
物理化学
复合材料
病理
生物
有机化学
水溶液
医学
生物化学
遗传学
替代医学
出处
期刊:Methods in molecular biology
日期:2022-09-27
卷期号:: 187-196
被引量:5
标识
DOI:10.1007/978-1-0716-2695-5_14
摘要
Aptamer-functionalized field-effect transistor (FET) biosensors enable detection of small-molecule targets in complex environments such as tissue and blood. Conventional FET-based platforms suffer from Debye screening in high ionic strength physiological environments where the effective sensing distance is limited to less than a nanometer from the surface of the sensor. Aptamers that undergo significant conformational rearrangement of negatively charged backbones upon target recognition within or in close proximity to the Debye length, facilitate the transduction of electronic signals through the semiconducting channel. Herein, the fabrication of high-performance, ultrathin-film FETs and subsequent aptamer functionalization are described. Moreover, electronic sensing measurement protocols alongside calibration methods to minimize device-to-device variations are covered.
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