| Literature DB >> 24383001 |
Vikas Dhull1, Anjum Gahlaut2, Neeraj Dilbaghi1, Vikas Hooda2.
Abstract
The exponentially growing population, with limited resources, has exerted an intense pressure on the agriculture sector. In order to achieve high productivity the use of pesticide has increased up to many folds. These pesticides contain organophosphorus (OP) toxic compounds which interfere with the proper functioning of enzyme acetylcholinesterase (AChE) and finally affect the central nervous system (CNS). So, there is a need for routine, continuous, on spot detection of OP compounds which are the main limitations associated with conventional analytical methods. AChE based enzymatic biosensors have been reported by researchers as the most promising tool for analysis of pesticide level to control toxicity and for environment conservation. The present review summarises AChE based biosensors by discussing their characteristic features in terms of fabrication, detection limit, linearity range, time of incubation, and storage stability. Use of nanoparticles in recently reported fabrication strategies has improved the efficiency of biosensors to a great extent making them more reliable and robust.Entities:
Year: 2013 PMID: 24383001 PMCID: PMC3872028 DOI: 10.1155/2013/731501
Source DB: PubMed Journal: Biochem Res Int
Figure 1Basic principle of electrochemical biosensor.
Scheme 1Reaction involved in generation of electrochemical response biosensor.
Figure 2Principle of AChE inhibition-based OP biosensor.
Figure 3Different supports available for fabrication of working electrode.
OP biosensors based on membrane immobilized AChE.
| Mode of detection | Transducer | Enzyme immobilization method | Minimum detection limit | Linearity | Substrate/enzyme inhibitor | Time of incubation | Storage stability | Reference |
|---|---|---|---|---|---|---|---|---|
| Potentiometric | Nylon and cellulose nitrate/pH electrode | Crosslinking | 0.038 | 50 × 103–2.5 × 103
| Trichlorfon, Co-Ral | 15 | 30 | [ |
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| Fiber-optic | Glass/sol-gel/polyvinyl | Crosslinking | 0.53 | 0.54–39.8 and 0.022–0.13 | Carbaryl, dichlorvos | 10 | 21 | [ |
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| Amperometric | Hybrid mesoporous silica/Pt electrode | Entrapment | 1.2 × 10−3
| 1.0 × 10−3–0.3 | DZN-oxon | 15 | 80 | [ |
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| Amperometric | MWCNTs/PAN/Pt electrode | Affinity bonds using concanavalin A | 5.0 × 10−9
| 3.6 × 10−8–3.6 × 10−5
| Paraoxon | 20 | 120 | [ |
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| Amperometric | PAN/AuNPs/Pt electrode | Covalent Bonding | 0.026 × 10−5
| 3.6 × 10−7–3.6 × 10−4
| Paraoxon | 20 | 30 | [ |
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| Amperometric | Cellophane/AuE | Crosslinking | 1.45 | 1.45–7.26 | Paraoxon | 15 | NR | [ |
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| Dissolved Oxygen metric | Poly (2-hydroxyethyl metacrylate)/oxygen electrode | Entrapment | 0.119 | 0.05–2.62 | Aldicarb | 5 | 2 | [ |
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| Amperometric | PVA-SbQ/Pt electrode | Entrapment | 7.2 × 10−5, 0.049 | NR | Paraoxon, thifensulfuron methyl | 30 | 30 | [ |
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| Amperometric | Polyacrylamide/pH electrode | Crosslinking | 3.62 × 103
| NR | Dichlorvos | 30 | 50 | [ |
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| Conductometric | Si3N4/Ti layer | Crosslinking | 10 ppb | NR | Zn+, Cd+ | 30 | 20 | [ |
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| Potentiometric | Pore glass/H+ electrode | Crosslinking | 2 × 10−10 M | 10−11–10−4 M | OP compounds | 30 | [ | |
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| Colorimetric | H bond N+ membrane | Physical adsorption | 1 mg/mL for omethoate, 0.1 mg/mL for dichlorvos, 2 mg/mL for methamidophos, 0.05 mg/mL for chlorpyrifos, 1.5 mg/mL for carbaryl, and 0.8 mg/mL for pirimicarb. | Op compounds | 15 | 60 | [ | |
Note: NR: not reported.
OP biosensors based on nonconducting polymer immobilized AChE.
| Mode of detection | Transducer | Enzyme immobilization method | Minimum detection limit | Linearity | Substrate/enzyme inhibitor | Time of incubation | Storage stability | Reference |
|---|---|---|---|---|---|---|---|---|
| Amperometric | MWCNTs/PAN/Pt electrode | Affinity Bonding | 5.0 × 10−9
| 3.6 × 10−8–3.6 × 10−5
| Paraoxon | 20 | 120 | [ |
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| Amperometric | PAN/AuNPs/Pt electrode | Covalent Bonding | 0.026 × 10−5
| 3.6 × 10−7–3.6 × 10−4
| Paraoxon | 20 | 30 | [ |
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| Amperometric | MSF/PVA/GCE | Entrapment | 0.2 × 10−3
| 0.2 × 10−3–44.8 × 10−3
| Monocrotophos | 10 | 30 | [ |
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| Amperometric | PVA/SbQ/SPE | Entrapment | 1.91 × 10−2
| NR | Paraoxon and chlorpyrifos-ethyl oxon | 10 | Nr | [ |
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| Amperometric | PVA/SbQ/Pt Electrode | Entrapment | 7.2 × 10−5, 0.18, and 0.049 | NR | Paraoxon, maneb, and thifensulfuron methyl | 30 | 30 | [ |
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| Amperometric | PAMAM-Au/CNTs/GCE | Electrostatic interaction | 4.0 × 10−3
| 4.8 × 10−3–9.0 × 10−2
| Carbofuran | 9 | 21 | [ |
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| Amperometric | MSF/PVA/GCE | Entrapment | 0.05 ppb (0.2 nM) | 0.05–10 ppb | Monocrotophos | 10 | 30 | [ |
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| Amperometric | Nylon Net | Covalent bonding | 1.3–3.9 ppb | NR | Paraoxon | 30 | 15–20 | [ |
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| Amperometric | PBA/SbQ/Pt Electrode | Crosslinking | 25 ppb–1.5 ppm | NR | Chlorpyrifos | 15 | NR | [ |
Note: NR: not reported.
OP biosensors based on conducting polymer immobilized AChE.
| Mode of detection | Transducer | Enzyme immobilization method | Minimum detection limit | Linearity | Substrate/enzyme inhibitor | Time of incubation | Storage stability | Reference |
|---|---|---|---|---|---|---|---|---|
| Amperometric | Polyacrylamide/pH electrode | Crosslinking | 3.62 × 103
| NR | Dichlorvos | 30 | 50 | [ |
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| Potentiometric | PEI/GCE | Covalent Bonding | 1.0 | NR | Dichlorvos | 10 | NR | [ |
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| Amperometric | PEI/SPE | Non Covalent Bonding | 1.0 × 10−4
| NR | Dichlorvos | 2 | NR | [ |
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| Amperometric | Mercaptobenzothiazole/ | Adsorption | 0.48 × 10−3
| NR | DiazinoFenthion | 20 | NR | [ |
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| Electrochemical | PANI/CNT ssDNA/Au electrode | Covalent Bonding | 1.0 × 10−6
| 1.0 × 10−5 and 1.0 | Methyl parathion and chlorpyrifos | 15 | 5 | [ |
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| Electrochemical | AuNPs-PPy nanowires GCE | Entrapment | 7.5 × 10−3
| 0.018–0.45 and 1.89–17.0 | Methyl parathion | 12 | 30 | [ |
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| Amperometric | PPY-PANI/MWCNTs/GCE | Adsorption | 3.02 × 10−3
| 0.030–1.51 and 3.027–75.67 | Malathion | 15 | 30 | [ |
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| Amperometric | SF/MWNTs/GCE | Adsorption | 5.0 × 10−7 M, 6.0 × 10−8 M | 3.5 × 10−6 to 2.0 × 10−3 M, 1.0 × 10−7 to 3.0 × 10−5 M | Methyl parathion, carbaryl | 10 | 4 weeks | [ |
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| Amperometric | CS/ALB/GCE | Encapsulation | 0.86 ± 0.098 | 0.25–1.50 and 1.75–10.00 | OP pesticides | 10 | 15 | [ |
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| Amperometric | PB/GCE | Crosslinking | 2.5 ng L−1 for dichlorvos, 15 ng L−1 for omethoate, 5 ng L−1 for trichlorfon, and 10 ng L−1
| 10 ng L−1–1 ng L−1 for dichlorvos | Dichlorvos, omethoate, tricholorfon, phoxim | 10 | [ | |
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| Voltammetric | GnPs/Chitosan/GCE | Covalent Bonding | 1.58 × 10−10 M | NR | Cholropyrifos | 10 | 10 | [ |
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| Potentiometric | Polymeric enzyme electrode | Entrapment | 0–10 ppb | NR | OP pesticides | 2 | NR | [ |
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| Electrochemical | ZrO2-SPE | Screen printing | 0.02 nM | 0.05 nM to 10 nM | OP compound | 40 | NR | [ |
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| Amperometric | Au-PDDA-PB matrix | Covalent Bonding | 0.8 pg/mL | 1.0–1000 pg/mL and 1.0–10 ng/mL | Monocrotophos | 10 | 30 | [ |
Note: NR: not reported.
OP biosensors based on sol-gel immobilized AChE.
| Mode of detection | Transducer | Enzyme immobilization method | Minimum detection limit | Linearity | Substrate/enzyme inhibitor | Time of incubation | Storage stability | Reference |
|---|---|---|---|---|---|---|---|---|
| Optical | Sol-gel/TMOS | Encapsulation | 0.94 | 3.17–31.48 | Naled, Mecarbam | 5 | 30 | [ |
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| Optical | Sol-gel/Glass | Encapsulation | 0.098 | 0.098–0.55 | Paraoxon | 30 | NR | [ |
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| Amperometric | Silica sol-gel/SPE | Encapsulation | 0.024, 0.015, and 0.012 | 0.01–0.001 | Paraoxon, dichlorvos, and chlorpyrifos-ethyl oxon | 20 | 6 | [ |
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| Amperometric | TMOS sol-gel/SPE | Encapsulation | 1.0 × 10−3
| 1.0 and 3.0 × 10−3
| Dichlorvos | 15 | NR | [ |
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| Amperometric | TEOS sol-gel/GCE | Encapsulation | 0.008 | 0.008–0.81 | Oxydemeton methyl | 20 | 21 | [ |
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| Optical | Chromo-ionophore/Sol-gel | Encapsulation | 2.26 | 2.26–31.67 | Dichlorvos | 15 | NR | [ |
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| Amperometric | Al2O3 sol-gel matrix SPE | Adsorption | 0.01 | 0.1–80 | Dichlorvos | 15 | 5 | [ |
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| Amperometric | Sol-gel matrix on TCNQ modified SPE | Entrapment | 1 × 10−2, | NR | Carbaryl, carbofuran, and pirimicard | 20 | 45 | [ |
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| Electrochemical | AuNPs-SiSG/GCE | Hydrogen bonds | 0.44 | NR | Monocrotophos | 10 | 30 | [ |
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| Amperometric | Alumina/sol-gel/sonogel composite/Carbon electrode | Encapsulation | 2.5 × 10−4
| 0.5 | Chlorpyriphos-ethyl oxon | 10 | 50 | [ |
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| Optical | Bromothymol blue/sol-gel | Encapsulation | 0.11 | 0.14–5.70 | Chlorpyrifos | 8 | 10 | [ |
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| Amperometric | Zinc oxide/sol-gel/SPE | 0.127 | 0.127–5.010 | Paraoxon | 10 | 90 | [ | |
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| Amperometric | Silica/sol-gel/Carbon electrode | Encapsulation | 3.0 × 10−4 and 0.47 | 3.7 × 10−4–1.8 × 10−3 and 0.27–4.09 | Methyl parathion and acephate | 20 and 4 | 30 | [ |
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| Cyclic Voltametry | Sol-gel/carbon electrode | Entrapment | 0.04 ppb for parathion, 47 ppb for monocrotophos | 0.1–1.0 ppb | Parathion and monocrotophos | 10 | NR | [ |
Note: NR: not reported.
OP biosensors based on screen-printed electrodes.
| Mode of detection | Transducer | Enzyme immobilization method | Minimum detection limit | Linearity | Substrate/enzyme inhibitor | Time of incubation | Storage stability | Reference |
|---|---|---|---|---|---|---|---|---|
| Amperometric | TMOS sol-gel/SPE | Encapsulation | 1.0 × 10−3
| 1.0 and 3.0 × 10−3
| Dichlorvos | 15 | NR | [ |
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| Amperometric | Al2O3 sol-gel/SPE | Adsorption | 0.01 | 0.1–80 | Dichlorvos | 15 | 5 | [ |
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| Amperometric | Sol-gel/TCNQ/SPE | Entrapment | 1 × 10−2, | NR | Carbaryl, carbofuran, and pirimicard | 20 | 45 | [ |
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| Amperometric | SPE/TCNQ/Graphite Electrode | Adsorption | 3.0 × 10−6
| 5 × 10−2–0.2 | Chlorpyrifos-ethyl oxon | 10 | 50 | [ |
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| Amperometric | CoPC/SPE | Crosslinking | 4.9 × 10−4
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10-5-1.0 | Carbofuran | 15 | NR | [ |
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| Amperometric | Phenylenediamine/ | Entrapment | 1 × 10−11, | 1.0 × 10−11
| Dichlorvos, parathion, and azinphos | 10 | 92 | [ |
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| Amperometric | Graphite-epoxy/SPE | Crosslinking | 1.0 × 10−4 and 1.0 × 10−5
| NR | Paraoxon and carbofuran | 15 | 5 | [ |
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| Amperometric | Glutaraldehyde vapour/SPE | Crosslinking | 0.18 | 0.18–54.00 | Paraoxon | 10 | NR | [ |
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| Amperometric | PVA-SbQ/SPE | Entrapment | 1.91 × 10−2
| NR | Paraoxon and chlorpyrifos-ethyl oxon | 10 | Nr | [ |
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| Amperometric | SWCNTs-CoPC/SPE | Covalent Bonding | 0.01 and 6.3 × 10−3
| 0.018–0.181 and 6.36 × 10−3–0.159 | Paraoxon and malaoxon | 15 | 3 | [ |
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| Amperometric | TCNQ modified-graphite | Screen printing | 1 ppb | 0–5 × 10−3 M | Methamidophos | 10 | NR | [ |
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| Amperometric | Gold electrode | Crosslinking | 0.1 mM | 1–10 mM | Paraoxon | 28 | [ | |
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| Amperometric | Carbon electrode | Covalent Bonding | 10−10 M | NR | Dichlorvos | 60 | NR | [ |
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| Amperometric | SPE | Copolymerisation | 4 to 7 | NR | Dicholrvos, methyl-parathion | 4 | NR | [ |
Note: NR: not reported.
AChE biosensor using quantum dots as immobilization support.
| Mode of detection | Transducer | Enzyme immobilization method | Minimum detection limit | Linearity | Substrate/enzyme inhibitor | Time of incubation | Storage stability | Reference |
|---|---|---|---|---|---|---|---|---|
| Electrochemical | AuNPs-SiSG/GCE | Hydrogen Bonding | 0.44 | NR | Monocrotophos | 10 | 30 | [ |
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| Amperometric | CdTe QDs/AuNPs/CHIT/GCE | Covalent Bonding | 1.34 | 4.4 × 10−3–4.48 and 8.96–67.20 | Monocrotophos | 8 | 30 | [ |
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| Optical | CdTe-QDs/Glass | Electrostatic interaction | 1.05 × 10−5 and 4.47 × 10−6
| 1.0 × 10−6–1.0 and 1.0–0.1 | Paraoxon | 15 | 35 | [ |
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| Fluorescence quenching | Mn: ZnSe d-dots | NR | 1.31 × 10−11 mol | 4.84 × 10−11 to 4.84 × 10−6 mol/L | Paraoxon | 10 | NR | [ |
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| Amperometric | CdTE QDs/Au electrode | Covalent Bonding | 2.98 × 10−3
| 4.96 × 10−3–2.48 | Carbyl | 10 | 30 | [ |
Note: NR: not reported.
Nanoparticles based fabrication of OP biosensors with AChE as biorecognition layer.
| Mode of detection | Transducer | Enzyme immobilization method | Minimum detection limit | Linearity | Substrate/enzyme inhibitor | Time of incubation | Storage stability | Reference |
|---|---|---|---|---|---|---|---|---|
| Amperometric | AuNPs/PB/GCE | Surface Adsorption | 3.5 × 10−9
| 4.48 × 10−3–4.48 × 10−2
| Monocrotophos | 10 | 30 | [ |
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| Amperometric | MWCNTs-AuNC/GCE | Hydrophilic adhesion | 1.81 × 10−3
| 3.0 × 10−3–3.027 | Malathion | 8 | 30 | [ |
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| Amperometric | ZrO2/CHIT/GCE | Surface Adsorption | 1.3, 5.0 × 10−3, and 1.7 | 6.6–440, 0.01–0.59, and 8.6–520 | Phoxin, malathion, and imethoate | 15 | 30 | [ |
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| Amperometric | Au-PtNPs/GCE | Crosslinking | 50 × 10−4, 40 × 10−3, and 40 | 50–200 × 10−3, 1.40–50 × 10−3, and 40–60 | Paraoxon ethyl, sarin, and aldicarb | 25 | NR | [ |
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| Amperometric | AuNPs/GCE | Surface Adsorption | 7.0 × 10−3
| 28 × 10−3–170 × 10−3
| Methamidophos | 10 | 7 | [ |
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| AuNPs-MWCNTs/GCE | Surface Adsorption | 1.0 × 10−3
| 0.1 × 10−3–7.0 × 10−3
| NR | 30 | NR | [ | |
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| Amperometric | PB/CHIT/GCE | Crosslinking | 0.113 × 10−4, 0.703 × 10−4, 0.194 × 10−4, and 0.33 × 10−4
| 0.45 × 10−4–0.045, 0.234 × 10−3–0.046, 0.116 × 10−3–0.0194, and 0.167 × 10−3–0.0335 | Paraoxon and chlorpyrifos-ethyl oxon | 10 | NR | [ |
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| Amperometric | TiO2-decorated graphene/GCE | Surface Adsorption | 1.4 × 10−3
| 4.9–74.5 and 74.5–9.9 × 103
| Carbyl | 3 | 20 | [ |
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| Voltammetric | Graphite/CHIT/GCE | Covalent Bonding | 1.58 × 10−4
| 1 × 10−4–1.0 | Chloropyrifos | 10 | 10 | [ |
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| Voltammetric | MWCNTs/AuNPs-CHIT/GCE | Surface Adsorption | 0.01 | 0.1–10 | Monocrotophos | NR | 50 | [ |
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| Amperometric | CdS-decorated garphene nanocomposite | Surface Adsorption | 3.4 × 10−3
| 9.9 × 10−3–9.93 | Carbaryl | 2 | 20 | [ |
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| Amperometric | CHIT-GNPs/Au electrode | Chemical Adsorption | 0.1 × 10−3
| 0.3 × 10−3–60.5 × 10−3
| Malathion | 15 | NR | [ |
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| Amperometric | MWCNTs-CHIT/GCE | Covalent Bonding | NR | NR | Carbaryl, malathion, dimethoate, and monocrotophos | 8 | 30 | [ |
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| Amperometric | AuNPs/Au electrode | Surface Adsorption | 33 × 10−3
| 10 × 10−3–135 × 10−3
| Carbofuran | 20 | 7 | [ |
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| Amperometric | PbO2/TiO2/Ti | Surface Adsorption | 0.1 × 10−3
| 0.01–20 | Trichlorfon | 10 | 5 | [ |
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| Amperometric | PB-CHIT/GCE | Covalent Bonding | 3.0 × 10−3
| 0.01–0.4 and 1.0–5.0 | Carbaryl | 10 | 30 | [ |
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| Amperometric | Er-GRO/Nafion | Surface Adsorption | 2.0 ng mL−1 | 5.0–100 ng mL−1 and 1.0–20 ng mL−1 | Dicholrvos | 10 | 28 | [ |
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| Potentiometric | SWCNT modified FGE | Crosslinking | 25–35 nM and 15–20 nM for darin and DFP, respectively | 20–60 nM and 20–80 nM for sarin and DFP, respectively | Sarin and DFP | 5 | 30 | [ |
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| Amperometric | Au-PtNPs/3-APTES/GC electrode | Crosslinking | 150–200 nM, 40–50 nM, and 40–60 | NR | Paraoxon ethyl, sarin, and aldicarb | 10 | NR | [ |
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| Amperometric | CNT-web modified glassy carbon electrode | Surface Adsorption | 1 nM | 20–1000 nM | Methyl parathion | 20 | NR | [ |
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| Amperometric | PAN-AuNPs | Covalent Bonding | 7.39 × 10−11 g L−1 | 10−10–10−7 g L−1 | Paraoxon | NR | 20 | [ |
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| Voltammetric | CdTe-GNPs film | Covalent Bonding | 0.3 ngmL−1 | 1–1000 ngmL−1 and 2–15 ngmL−1 | Monocrotophos | 8 | 30 | [ |
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| Amperometric | SiSG-AuNPs | Surface adsorption | 0.6 ng/mL | 0.001–1 | Monocrotophos | 10 | 30 | [ |
Note: NR: not reported.