Acrylamide Hydrogel-Modified Silicon Nanowire Field-Effect Transistors for pH Sensing

Author:

Li Gangrong,Wei Qianhui,Wei Shuhua,Zhang Jing,Jin Qingxi,Wang Guozhi,Hu Jiawei,Zhu Yan,Kong Yun,Zhang QingzhuORCID,Zhao Hongbin,Wei Feng,Tu Hailing

Abstract

In this study, we report a pH-responsive hydrogel-modified silicon nanowire field-effect transistor for pH sensing, whose modification is operated by spin coating, and whose performance is characterized by the electrical curve of field-effect transistors. The results show that the hydrogel sensor can measure buffer pH in a repeatable and stable manner in the pH range of 3–13, with a high pH sensitivity of 100 mV/pH. It is considered that the swelling of hydrogel occurring in an aqueous solution varies the dielectric properties of acrylamide hydrogels, causing the abrupt increase in the source-drain current. It is believed that the design of the sensor can provide a promising direction for future biosensing applications utilizing the excellent biocompatibility of hydrogels.

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

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