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A Semiconductor-based Field-effect Platform for (Bio-)Chemical and Physical sensors: From Capacitive EIS Sensors and LAPS over ISFETs to Nano-scale Devices

机译:用于(生物)化学和物理传感器的基于半导体的场效应平台:从电容式EIS传感器和纳米级圈到纳米级设备

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The coupling of semiconductor field-effect devices (FED) together with chemical and biological recognition elements, like functional intelligent materials, biomolecules and living cells, represents an attractive platform for the creation of different (bio-)chemical sensors, multiparameter analysis systems and bio-chips. This paper summarises recent developments and current research activities in the field of (bio-)chemically modified FEDs, scaling down from capacitive EIS (electrolyte-insulator-semiconductor) sensors and LAPS (light-addressable potentiometric sensor) to ISFETs (ion-sensitive field-effect transistor) that have been realised in our laboratory. Selected examples of application of ISFETs for the detection of physical parameters in liquids are presented, too. With the aim of future development of nano-devices for the detection of single biomolecules, the possibility of a simple preparation of different self-aligned nano-structures by using conventional photolithography and pattern-size reduction technique has been experimentally demonstrated.
机译:半导体场效液装置(FED)与化学和生物识别元件一起相耦合,如功能性智能材料,生物分子和活细胞,代表了创建不同(生物)化学传感器,多参数分析系统和生物的有吸引力的平台-chips。本文中(生物)化学修饰的FED,从电容EIS(电解液绝缘体半导体)传感器和LAPS(光寻址电位传感器)按比例缩小到的ISFET(离子敏感的场总结的最新发展和当前研究活动 - 已经在我们的实验室中实现的影响晶体管。还提出了用于检测液体中物理参数的ISFET的应用示例。随着未来开发用于检测单一生物分子的纳米器件的目的,通过使用常规光刻和图案尺寸减少技术进行了简单地制备不同自对准纳米结构的可能性。

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