0
Article Tier 2 Detection Methods Nanoplastics Sign in to save

Fluorescence and electrical resistance bimodal sensing of microplastics using sulfur-doped carbon nanoparticle/polypyrrole composites

Microchemical Journal 2025 1 citation

No summary available — this paper's abstract is not included in the open metadata provided by the publisher. Learn why →

More Papers Like This

Article Tier 2

Sensing of Microplastics Using Advanced Materials: A Comprehensive Review

AI summary Read the abstract

This review surveys advanced materials—including iron oxide and gold nanoparticles, quantum dots, carbon nanotubes, MOFs, conductive polymers, and biopolymers—that enable sensitive detection and removal of microplastics and nanoplastics from environmental matrices. Rapid, reliable sensing technologies are foundational to understanding human and ecological exposure levels and evaluating the effectiveness of remediation strategies.

Article Tier 2

Fluorescence sensing of microplastics on surfaces

AI summary Read the abstract

Fluorescence techniques using Nile Red and pyrene as polarity probes can detect polystyrene microplastics directly on surfaces such as sand and sea salt, with a detection limit of approximately 0.2 micrograms per gram on sea salt. While relatively low in selectivity, this rapid method offers a practical tool for environmental screening and risk assessment of microplastic contamination in coastal and marine settings.

Article Tier 2

Advanced Nanomaterials for Microplastic Detection and Degradation: A Sustainable Approach to Environmental Remediation

AI summary Read the abstract

Researchers examined how advanced nanomaterials can be engineered to detect and degrade microplastics in the environment, presenting a sustainable remediation approach that leverages nanoscale properties to address the growing challenge of microplastic pollution across ecosystems.

Article Tier 2

Plasmonic Detection of Microplastics and Microorganisms Using a Circular-Nanorod-Coupled MIM Sensor

AI summary Read the abstract

Researchers designed a compact plasmonic sensor based on a silver metal-insulator-metal waveguide coupled to an octagonal cavity embedded with circular nanorods, achieving dual resonance sensitivities of 1,321 and 2,198 nm/RIU that enable optical detection of microplastics and aquatic microorganisms through refractive index shifts.

Article Tier 2

Application of Eco-Friendly Fluorescent Dyes in Microplastic Detection

AI summary Read the abstract

Scientists tested safer, eco-friendly glowing dyes as a way to spot tiny plastic particles (microplastics) in samples, comparing them to the commonly used dye Nile Red. They found that the best dye and lighting combo depends on the type of plastic, for example, polypropylene (found in many food containers and packaging) was hardest to detect, while PET (used in bottles) was easiest. This matters because better, safer detection tools could help researchers more accurately track how much microplastic pollution surrounds us, which is an important step toward understanding its potential effects on our health.

Research digests by email

When a large batch of papers lands in the Atlas, we read through it and send a short write-up of what stood out.

Email me about

Share this paper