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March 8, 202616 citations

Turning Sunlight and Seawater Into Energy: Photocatalytic Hydrogen Peroxide as a Green Fuel Carrier.

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PRPeng RenYLYiming LiuINIqra Nisar

Key Points

  • This review aims to summarize advancements in the synthesis of hydrogen peroxide directly from seawater using photocatalysis.
  • Discussed photocatalytic reactions, including interactions between seawater components and photocatalysts.
  • Analyzed different types of photocatalysts used in hydrogen peroxide synthesis.
  • Identified technological bottlenecks and future research directions.
  • Highlighted recent advancements in photocatalytic synthesis of hydrogen peroxide from seawater.
  • Discussed challenges such as catalyst deactivation and reaction pathway interference.
  • Provided insights on the advantages and limitations of various photocatalysts.

Abstract

Hydrogen peroxide (H2O2) is an emerging green energy carrier and a versatile oxidant. Its production, however, remains heavily reliant on the energy- and waste-intensive anthraquinone process. In contrary, photocatalysis provides a sustainable pathway for the preparation of H2O2 by utilizing oxygen (O2) and water (H2O) as feedstocks. In this aspect, since seawater is the most abundant water resource on the earth, utilization of seawater for the generation of H2O2 will have great potential in this field. However, the complex composition and high salt content of seawater pose significant challenges to the photocatalytic process, such as catalyst deactivation and interference with the reaction pathway. In this review article, we have summarized recent advances in the photocatalytic synthesis of H2O2 directly from seawater. We have initially introduced the basic principle of photocatalytic reaction and the interaction between the components in seawater and the photocatalyst. Then, according to the different types of photocatalysts, we have discussed the research progress, their advantages, and limitations in the synthesis of H2O2. Finally, we have provided the current technological bottlenecks and foreseen future research directions. In summary, this review article will provide a comprehensive understanding of the generation of H2O2 directly from seawater.

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Cite This Study

Ren et al. (2026) studied this question.

synapsesocial.com/papers/69acc57d32b0ef16a404fa79https://doi.org/10.1002/adma.72660
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