Unlocking the potential of carbon quantum dots: Versatile photocatalysts for methylene blue degradation—A comprehensive review of synthesis, catalytic mechanisms, and environmental applications

Author:

Ali Farhad12,De Juan‐Corpuz Lyn Marie234ORCID,Corpuz Ryan D.23456ORCID

Affiliation:

1. Department of Chemistry University of Wah Wah Cantt Pakistan

2. Nano Society of the Philippines Inc Manila Philippines

3. Energy Research and Innovation Collaboratory De La Salle University ‐ Laguna Campus Biñan Laguna Philippines

4. Nanolabs LRC Co. Ltd. Valenzuela City Philippines

5. Department of Science and Technology Philippine Council for Industry, Energy, and Emerging Technology Research and Development Taguig City Philippines

6. Physics Department De La Salle University Manila Philippines

Abstract

AbstractCarbon Quantum Dots (CQDs) are nanoscale carbon‐based particles with unique quantum properties. Because of their customizable size, optical properties, and surface functions, CQDs are frequently used in a wide range of applications. The present thorough analysis delves into the crucial function of CQDs in the photocatalytic breakdown of Methylene Blue (MB), providing valuable perspectives on their production, attributes, and catalytic processes. The effects of pH, wavelength, intensity, and other variables on the effectiveness of MB degradation are covered in detail. An analytical review of the kinetic models used to estimate the deterioration process is given. For improved stability and recyclability, the synergistic effects of CQD‐based composites and developments in catalyst immobilization techniques are examined. Prospects for the future center on reactor designs, integration into large‐scale water treatment systems, and optimization of CQD features. The research highlights the revolutionary potential of CQDs in transforming wastewater treatment and advancing environmentally sound solutions.

Funder

Science and Technology Directorate

Publisher

Wiley

Reference143 articles.

1. Fish eco-genotoxicology: Comet and micronucleus assay in fish erythrocytes as in situ biomarker of freshwater pollution

2. Freshwater plastic pollution: Recognizing research biases and identifying knowledge gaps

3. Allied Market Research Synthetic Dyes Market Size share Competitive Landscape and Trend Analysis Report by type by END‐USE INDUSTRY Global Opportunity Analysis and Industry Forecast 2023‐2032. n.d.‐b Allied Market Research.https://www.alliedmarketresearch.com/https://www.alliedmarketresearch.com/synthetic-dyes-market

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