Mobile phone-assisted imprinted nanozyme for bicolor colorimetric visual detection of erythromycin in river water and milk samples
Author:
Funder
National Natural Science Foundation of China
Publisher
Elsevier BV
Reference61 articles.
1. Guidelines for the use and interpretation of adsorption isotherm models: A review;Al-Ghouti;Journal of Hazardous Materials,2020
2. Recent trends in advanced oxidation process-based degradation of erythromycin: Pollution status, eco-toxicity and degradation mechanism in aquatic ecosystems;Ashraf;Science of the Total Environment,2021
3. Molecularly imprinted polymer-based sensor for electrochemical detection of erythromycin;Ayankojo;Talanta,2020
4. Thermal hydrolysis for sewage treatment: A critical review;Barber;Water Research,2016
5. Molecularly imprinted polymers;BelBruno;Chemical Reviews,2019
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