Wen_2023_RSC.Adv_13_6389

Reference

Title : A portable acetylcholinesterase-based electrochemical sensor for field detection of organophosphorus - Wen_2023_RSC.Adv_13_6389
Author(s) : Wen L , Wang J , Liu Z , Tao CA , Rao J , Hang J , Li Y
Ref : RSC Adv , 13 :6389 , 2023
Abstract :

A portable acetylcholinesterase (AChE)-based electrochemical sensor based on a screen-printed carbon electrode (SPCE) and a miniature potentiostat was constructed for the rapid field detection of organophosphorus pesticides (OPs). Graphene (GR) and gold nanoparticles (AuNPs) were successively introduced onto SPCE for surface modification. Due to the synergistic effect of the two nanomaterials, the signal of the sensor has a significant enhancement. Take isocarbophos (ICP) as a model for chemical warfare agents (CAWs) and Ops; the SPCE/GR/AuNPs/AChE/Nafion sensor shows a wider linear range (0.1-2000 microg L(-1)), and a lower limit of detection (0.012 microg L(-1)) than SPCE/AChE/Nafion and SPCE/GR/AChE/Nafion sensors. Tests in actual fruit and tap water samples also yielded satisfactory results. Therefore, the proposed method can be used as a simple and cost-effective strategy for construction of portable electrochemical sensors for OP field detection.

PubMedSearch : Wen_2023_RSC.Adv_13_6389
PubMedID: 36874943

Related information

Citations formats

Wen L, Wang J, Liu Z, Tao CA, Rao J, Hang J, Li Y (2023)
A portable acetylcholinesterase-based electrochemical sensor for field detection of organophosphorus
RSC Adv 13 :6389

Wen L, Wang J, Liu Z, Tao CA, Rao J, Hang J, Li Y (2023)
RSC Adv 13 :6389