Smartphone-based plant-wearable microfluidic sensor with self driven electrolyte for in-situ detection of methyl parathion

Author:

Zhang Qing,Ma Shangshang,Meng Wanghan,Zheng Yaru,Yin Luyao,Wang Hongyan,Shi Hongwei,Zhang Keying,Su Shao

Publisher

Elsevier BV

Reference33 articles.

1. Graphene/g-carbon nitride (GO/g-C3N4) nanohybrids as a sensor material for the detection of methyl parathion and carbendazim;Ilager;Chemosphere,2022

2. Electrochemical sensing platform for the detection of methyl parathion applying highly biocompatible non-covalent functionalized phosphonium-based ionic liquid@ MWCNTs hybrid to immobilize hemoglobin;Liu;Biosens. Bioelectron.,2022

3. Fabrication of dendritic nanoporous gold via a two-step amperometric approach: application for electrochemical detection of methyl parathion in river water samples;Junior;Talanta,2021

4. The organophosphorus pesticide chlorpyrifos induces sex-specific airway hyperreactivity in adult rats;Shaffo;Toxicol. Sci.,2018

5. Uniform honeycomb CNT-microparticles prepared via droplet-microfluidics and sacrificial nanoparticles for electrochemical determination of methyl parathion;Yao;Sens. Actuators B-Chem.,2020

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