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March 5, 2026Journal of Magnesium and Alloys0 citationsOpen Access

A mini-review on magnesium alloy-based materials: Recent progress in photocatalysis, mechanistic insight & possibilities in photoreforming of plastic waste

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ASAlaka SamalSPSatyanarayan PalNDNigamananda Das

Key Points

  • This review aims to explore the advancements in magnesium alloy-based materials for photocatalytic applications, particularly in the context of plastic waste reforming.
  • Conducted a comprehensive literature survey on magnesium alloy (Mg-A) materials and their applications.
  • Compared structural and electronic properties of various Mg-A materials.
  • Examined reaction mechanisms for photocatalytic applications through design strategies like alloying and surface modification.
  • Discussed the design principles and challenges of Mg-A materials in multidisciplinary applications.
  • Identified intrinsic properties of Mg-A materials that enhance photocatalysis, including tunable band structures and charge separation.
  • Highlighted the potential of Mg-A photocatalysts to address plastic waste through innovative defect engineering and heterojunction construction.
  • Proposed pathways for efficient hydrogen yield and solar-driven valorization of waste plastic.

Abstract

• Comprehensive literature survey on Mg-A materials and its applications. • Comparison of variety of Mg-A, structural and electronic properties. • Detailed insight into the reaction mechanism for photocatalytic applications. • Study of Mg-A design strategies through alloying, surface modification and doping in nanostructures. • Finally, perspective of Mg-A materials to be applied in Plastic waste photoreforming. In preceding decades, there has been a trend to prepare non noble metal-based, abundantly accessible, biocompatible nanoparticles for energy conversion and wastewater abatement applications. Magnesium alloys (Mg-A) nanoparticles that represent an emerging class of earth-abundant materials stand out in this category with unique properties, easy production with high yield and ability to combat poisonous wastes and enabling solar energy generation. This mini-review represents a landscape of the most recent investigations of Mg-A photocatalysts for energy and environmental applications. Also delves into the obscure interaction between Mg-A materials and reactants, with highlights of its exceptional opportunities/challenges represented and how Mg-A can be exploited in multidisciplinary reaction systems, which could promote innovation and show the way towards sustainability in future. Starting with the fundamentals and significance of Mg-A nanoparticles, a series of representative Mg-A based photocatalysts (primarily MgO, MgFe 2 O 4 , Mg(OH) 2 and Mg-Al LDH composites) for particular applications are exemplified. Their intrinsic surface basicity, tunable band structures, defect chemistry, and layered architectures offer unexplored opportunities for high adsorptivity and enhanced charge separation. Finally, this review also proposes a novel vision into the major perspectives for research in the emerging photoreforming of plastic wastes to deal with. This review is the first concise report that focuses specifically on Mg-based materials for photocatalysis/photoreforming of plastic waste and therefore fills a gap left by prior reviews. Moreover, with further integrated discussion of band alignment, charge-transport behavior, and structural design principles, this review establishes Mg-A photocatalysts as a promising but undeveloped platform for future solar-driven valorization of plastic waste. And it outlines the clear pathways toward achieving efficient hydrogen-yielding-photoreforming of waste plastic through defect engineering, alloying and heterojunction construction.

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Cite This Study

Samal et al. (2026) studied this question.

synapsesocial.com/papers/69a91d9bd6127c7a504c0879https://doi.org/10.1016/j.jma.2026.101992
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