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Review

Advances in Phosphorus-Based Catalysts for Urea Electrooxidation: A Pathway to Sustainable Waste to Energy Conversion Through Electrocatalysis

by
Hany M. Abd El-Lateef
1,*,
Mai M. Khalaf
1 and
Ibrahim M. A. Mohamed
2,*
1
Department of Chemistry, College of Science, King Faisal University, Al-Ahsa 31982, Saudi Arabia
2
Department of Chemistry, Faculty of Science, Sohag University, Sohag 82524, Egypt
*
Authors to whom correspondence should be addressed.
Catalysts 2024, 14(12), 937; https://doi.org/10.3390/catal14120937
Submission received: 26 November 2024 / Revised: 13 December 2024 / Accepted: 16 December 2024 / Published: 18 December 2024
(This article belongs to the Special Issue Feature Review Papers in Electrocatalysis)

Abstract

The electrocatalytic oxidation of urea has gained significant attention as a promising pathway for sustainable energy conversion and wastewater treatment that could address the dual goals of waste remediation and renewable energy generation. Phosphorous function groups-based catalysts have been introduced as potential electrode materials for enhancing the urea electrocatalytic oxidation reaction (UEOR) due to their unique structural properties, high stability, and tunable electronic characteristics. This review presents recent advancements in phosphorous-based catalysts (phosphates/phosphides) for UEOR. It highlights the development of novel phosphorous materials, synthesis approaches, and electrocatalytic insights into urea electrooxidation on phosphorous-based materials surfaces. Key topics include the role of different metal phosphates, surface modifications, and compositional optimizations to improve electrocatalytic efficiency and durability. Through a critical evaluation of current research trends and technological progress, this review underscores the potential of phosphate-based catalysts as environmentally friendly and efficient alternatives for sustainable waste-to-energy conversion via UEOR. The review concludes with a perspective on future directions for optimizing phosphate catalysts, scaling up practical applications, and integrating UEOR systems into renewable energy infrastructures.
Keywords: urea electrooxidation; phosphate-based catalysts; waste-to-energy conversion; electrocatalysis; renewable energy; sustainable catalysis; metal phosphates; catalyst stability; energy-efficient wastewater treatment; green chemistry urea electrooxidation; phosphate-based catalysts; waste-to-energy conversion; electrocatalysis; renewable energy; sustainable catalysis; metal phosphates; catalyst stability; energy-efficient wastewater treatment; green chemistry

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MDPI and ACS Style

Abd El-Lateef, H.M.; Khalaf, M.M.; Mohamed, I.M.A. Advances in Phosphorus-Based Catalysts for Urea Electrooxidation: A Pathway to Sustainable Waste to Energy Conversion Through Electrocatalysis. Catalysts 2024, 14, 937. https://doi.org/10.3390/catal14120937

AMA Style

Abd El-Lateef HM, Khalaf MM, Mohamed IMA. Advances in Phosphorus-Based Catalysts for Urea Electrooxidation: A Pathway to Sustainable Waste to Energy Conversion Through Electrocatalysis. Catalysts. 2024; 14(12):937. https://doi.org/10.3390/catal14120937

Chicago/Turabian Style

Abd El-Lateef, Hany M., Mai M. Khalaf, and Ibrahim M. A. Mohamed. 2024. "Advances in Phosphorus-Based Catalysts for Urea Electrooxidation: A Pathway to Sustainable Waste to Energy Conversion Through Electrocatalysis" Catalysts 14, no. 12: 937. https://doi.org/10.3390/catal14120937

APA Style

Abd El-Lateef, H. M., Khalaf, M. M., & Mohamed, I. M. A. (2024). Advances in Phosphorus-Based Catalysts for Urea Electrooxidation: A Pathway to Sustainable Waste to Energy Conversion Through Electrocatalysis. Catalysts, 14(12), 937. https://doi.org/10.3390/catal14120937

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