Nanomaterials based non-enzymatic electrochemical and optical sensors for the detection of carbendazim: A review

I Suresh, S Selvaraj, N Nesakumar… - Trends in Environmental …, 2021 - Elsevier
Carbendazim sensors with high sensitivity and selectivity have become imperative for the
welfare of the food industry, agriculture, aquaculture, and forestry. The design and …

Sensitive enzyme-free electrochemical sensors for the detection of pesticide residues in food and water

MZ Abedeen, M Sharma, HS Kushwaha… - TrAC Trends in Analytical …, 2024 - Elsevier
Pesticides have been impudently used to boost agricultural production, but their excessive
and uncontrolled use inevitably affects the soil and water, eventually entering the food chain …

Interfacial Superassembly of Mo2C@NiMn-LDH Frameworks for Electrochemical Monitoring of Carbendazim Fungicide

XB Joseph, JN Baby, SF Wang, B Sriram… - ACS Sustainable …, 2021 - ACS Publications
The large-scale usage of fungicides has been encountered with their manifestations in
various agro-food products. This causes several detrimental impacts such as phytotoxicity …

Fabrication of flower-like nickel cobalt-layered double hydroxide for electrochemical detection of carbendazim

T Kokulnathan, TJ Wang, F Ahmed, N Arshi - Surfaces and Interfaces, 2023 - Elsevier
The development of highly-efficient electrocatalysts is crucial to detect carbendazim (CDM)
residue in the environment. Herein, nickel cobalt-layered double hydroxide (NiCo-LDH) is …

[HTML][HTML] Electrochemical sensor based on biochar and reduced graphene oxide nanocomposite for carbendazim determination

MVS Sant'Anna, SWMM Carvalho, A Gevaerd… - Talanta, 2020 - Elsevier
For the first time, a nanocomposite based on biochar and reduced graphene oxide (rGO)
was employed to construct a modified carbon paste electrode and applied for the …

Gadolinium sesquisulfide anchored N-doped reduced graphene oxide for sensitive detection and degradation of carbendazim

KY Kumar, MK Prashanth, L Parashuram, B Palanivel… - Chemosphere, 2022 - Elsevier
Agriculture is having a major role in solving issues associated with food shortages across
the globe. Carbendazim (CZM) is one of the fungicides which is commonly used in …

Electrochemical monitoring of isoproturon herbicide using NiO/V2O5/rGO/GCE

JA Buledi, AR Solangi, A Mallah, ZH Shah… - Journal of Food …, 2023 - Springer
The excessive exploitation of herbicides in crops pose lethal effects on the environment that
causes several serious health issues in human and severely affects the aquatic life. The …

Synergy of the LaVO4/h-BN Nanocomposite: A Highly Active Electrocatalyst for the Rapid Analysis of Carbendazim

B Sriram, JN Baby, YF Hsu, SF Wang… - Inorganic …, 2021 - ACS Publications
In the field of agriculture fungicides are vital, providing the most important ecosystem service
for food production. The widespread use of these chemicals can significantly lead to various …

MoS2/MWCNTs porous nanohybrid network with oxidase-like characteristic as electrochemical nanozyme sensor coupled with machine learning for intelligent …

X Zhu, P Liu, Y Ge, R Wu, T Xue, Y Sheng, S Ai… - Journal of …, 2020 - Elsevier
Electrochemical nanozyme sensor coupled with machine learning (ML) for intelligent
analysis of carbendazim (CBZ) residues in tea and rice samples using graphene-like …

Facile synthesis of chitosan-carbon nanofiber composite supported copper nanoparticles for electrochemical sensing of carbendazim

P Sundaresan, CC Fu, SH Liu, RS Juang - Colloids and Surfaces A …, 2021 - Elsevier
The detection of carbendazim (CBZ) is very important due to environmental concern. Hence,
the development of efficient electrocatalytic sensors for CBZ is of great interest to …