Novel Flexible Wearable Field‐Effect Transistor Aptasensor with DNA Hydrogel for In Situ Wireless Detection of Organophosphorus Pesticide Residues

材料科学 检出限 恒电位仪 纳米技术 适体 环介导等温扩增 可穿戴计算机 晶体管 杀虫剂 滚动圆复制 生物传感器 农药残留 无线 原位 甲拌磷 线性范围 环境DNA 污染 毒品检测 佩多:嘘 焦磷酸盐 毒死蜱
作者
Rui Xu,Jingcheng Huang,Junhao Zhao,Shouyi Dou,Zhiheng Zhu,Zheng Shen,Heng Zhang,Lingjun Geng,Jiashuai Sun,Dianbin Su,Jicheng Zhao,Fangling Du,Xia Sun,Yemin Guo,Jianfeng Ping
出处
期刊:Advanced Functional Materials [Wiley]
卷期号:36 (40)
标识
DOI:10.1002/adfm.202523715
摘要

ABSTRACT Organophosphorus pesticides (OPs) are widely applied for crop pest control, but human health and the environment are seriously threatened by their excessive use. Therefore, rapid detection of pesticide residues is of great importance. In this work, a flexible aptasensor was developed by integrating an indium oxide electrolyte‐gated field‐effect transistor (EG‐FET) with a surface‐adhered DNA hydrogel obtained via rolling circle amplification (RCA) for in situ detection of OPs residues. The target pesticides were specifically recognized by the responsive DNA hydrogel, which underwent structural collapse and consequently modulated carrier depletion in the n‐type FET channel. Furthermore, a wireless detection device based on a dual‐channel potentiostat and a smartphone‐based human‐machine interface was established, enabling the detection of four OPs, including omethoate (OMT), phorate (PHO), isocarbophos (ICP), and chlorpyrifos (CPF). The EG‐FET aptasensor exhibited a good linear relationship between signal response and pesticide concentration in the range of 1 pg/mL–10 ng/mL, with the limit of detection of 0.244, 0.273, 0.132, and 0.301 pg/mL, respectively. The developed device was characterized by compactness and low‐cost fabrication. This work proposes a new approach to detecting small‐molecule contaminants, opening avenues for transforming agricultural, food safety, and environmental monitoring from passive post‐event detection to active process control.
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