Abstract
Access to clean drinking water remains a critical global health issue, with over 2 billion people lacking access to safely managed water. Among the contaminants of concern, heavy metals (particularly arsenic) pose significant risks due to their persistence and toxicity. Long-term exposure to arsenic (As3+), especially at concentrations exceeding the World Health Organisation's (WHO) guideline of 10 μg L−1, has been linked to severe health conditions, including cancer, dermatological issues, and cognitive impairments. Traditional laboratory-based approaches offer high sensitivity and selectivity but are expensive, time-consuming, and require skilled personnel, making them impractical for in-the-field use. In recent years, electrochemical methods, particularly using screen-printed electrodes (SPEs), have emerged as a promising alternative for As3+ detection, the most toxic form. SPEs offer a compact, cost-effective, and portable solution, enabling real-time, on-site monitoring of arsenic levels in water. This review systematically explores recent advancements in SPEs for the detection of As3+, with a focus on electrode modifications aimed at enhancing sensitivity and selectivity. We highlight techniques involving the integration of precious metals, biosensors, and carbon-based materials, all of which contribute to improved (lower) detection limits and wide sensing ranges. Practical applications in environmental monitoring (particularly in remote or resource-limited settings) are also discussed, offering a scalable and efficient solution for arsenic detection; SPEs have the potential to revolutionise water quality assessment and supporting global public health initiatives.
Cite
CITATION STYLE
Pimlott, J. L., Brownson, D. A. C., Randviir, E. P., Brack, E. M., Banks, C. E., & Rowley-Neale, S. J. (2026, February 1). Electroanalytical overview: recent advances in the sensing of arsenic using screen-printed electrochemical platforms. Environmental Science: Nano. Royal Society of Chemistry. https://doi.org/10.1039/d5en00708a
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.