Advances in electrochemical detection electrodes for As (III)

H Hu, B Xie, Y Lu, J Zhu - Nanomaterials, 2022 - mdpi.com
Arsenic is extremely abundant in the Earth's crust and is one of the most common
environmental pollutants in nature. In the natural water environment and surface soil …

Environmental applications of electromembrane extraction: a review

L Shi, M Chen, G Zhao, X Wang, M Fan, R Liu, F Xie - Membranes, 2023 - mdpi.com
Electromembrane extraction (EME) is a miniaturized extraction technique that has been
widely used in recent years for the analysis and removal of pollutants in the environment. It …

Reliable electrochemical sensing arsenic (III) in nearly groundwater pH based on efficient adsorption and excellent electrocatalytic ability of AuNPs/CeO2-ZrO2 …

M Yang, PH Li, WH Xu, Y Wei, LN Li, YY Huang… - Sensors and Actuators B …, 2018 - Elsevier
Even though electrochemical analytical tools have been widely investigated for toxic As (III)
detection and the achievements have also been so fruitful. However, electroanalysis method …

A novel highly efficient and accurate electrochemical detection of poisonous inorganic Arsenic (III) ions in water and human blood serum samples based on SrTiO3/β …

A Karthika, S Selvarajan, P Karuppasamy… - Journal of Physics and …, 2019 - Elsevier
Abstract Strontiumtitaniumtrioxide (SrTiO 3) decorated β-cyclodextrin (β-CD) nanocomposite
modified glassy carbon electrode was developed for the efficient and accurate determination …

Recent developments in electrochemical determination of arsenic

Z Guo, M Yang, XJ Huang - Current Opinion in Electrochemistry, 2017 - Elsevier
Arsenic is considered to be one of the most toxic element in the natural environment.
Electrochemical techniques for the detection of arsenic have inherent advantages. Here, we …

Recent advances in chemically modified electrodes, microfabricated devices and injection systems for the electrochemical detection of heavy metals: A review

G Zhao, H Wang, G Liu - International Journal of Electrochemical Science, 2017 - Elsevier
Heavy metal (HM) ion pollution has become a serious environmental problem in both
developed and developing countries and will inevitably pose a threat to humans and …

The ultra-sensitive electrochemical detection of As (III) in ground water using disposable L-cysteine/Lipoic Acid functionalised gold nanoparticle modified screen …

AN Jijana, N Mphuthi, P Shumbula, S Vilakazi… - Electrocatalysis, 2021 - Springer
An ultrasensitive electrochemical sensor to detect arsenic (III), a highly toxic heavy metal ion,
has been successfully developed. The sensing platform composed of L-cysteine (Lcyst) …

A simple and selective approach for determination of trace Hg (II) using electromembrane extraction followed by graphite furnace atomic absorption spectrometry

MA Kamyabi, A Aghaei - Spectrochimica Acta Part B: Atomic Spectroscopy, 2017 - Elsevier
The present study proposes the determination of trace Hg (II) using electromembrane
extraction followed by graphite furnace atomic absorption spectrometry (GFAAS). Hg (II) …

A novel method for the preconcentration and determination of ampicillin using electromembrane microextraction followed by high‐performance liquid chromatography

A Aghaei, M Erfani Jazi, TE Mlsna… - Journal of separation …, 2019 - Wiley Online Library
Electromembrane extraction was used with high‐performance liquid chromatography for
preconcentration and determination of ampicillin residues in cow milk. Ampicillin is …

Ultra-selective, trace level detection of As3+ ions in blood samples using PANI coated BiVO4 modified SPCE via differential pulse anode stripping voltammetry

L Durai, S Badhulika - Materials Science and Engineering: C, 2020 - Elsevier
We report a novel, facile hydrothermal synthesis of bismuth vanadate (BiVO 4) nanoflakes
coated with polyaniline (PANI) via electrodeposition on screen-printed carbon electrode …