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June 1, 2026EcoEnergy0 citationsOpen Access

Design and Operation of Photovoltaic‐Driven Electrocatalytic Water Splitting for Hydrogen Production

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ZDZhenlan DouYZY ZhangCZC Zhang

Key Points

  • This review aims to provide a comprehensive understanding of photovoltaic-driven electrocatalytic water splitting systems for hydrogen production.
  • Introduced characteristics of various photovoltaic technologies for optimal system selection.
  • Analyzed principles, advantages, and drawbacks of different PV–EC configurations.
  • Discussed challenges and future research directions for improving solar-to-hydrogen efficiency.
  • Identified key factors influencing the efficiency of photovoltaic and electrocatalytic systems.
  • Outlined strategies for effective coupling of PV and electrolysis units.
  • Highlighted challenges in achieving high solar-to-hydrogen efficiency.

Abstract

ABSTRACT With the rapid development of photovoltaic (PV) technologies, the storage and transportation of the electricity generated by photovoltaics have received increasing attention. Advanced technologies that integrate photovoltaic energy conversion and storage are important for handling the regional and intermittent features of solar energy, thereby enabling its efficient utilization. Recently, photovoltaic‐driven electrocatalytic water splitting (PV–EC) for hydrogen production has been considered one of the most promising technologies. A deep understanding of both photovoltaic systems and electrocatalytic water splitting systems is essential for designing and evaluating a highly efficient photovoltaic‐driven electrocatalysis (PV–EC) system. This review aims to provide key knowledge and guidance on PV–EC systems. It begins by introducing the characteristics of various photovoltaic technologies, which would offer guidance on selecting the most suitable PV system for matching with the electrolysis process. It then analyzes the principles, advantages, and drawbacks of various PV–EC configurations, along with strategies for effectively coupling PV and EC units. This would provide guidance on regulating operating conditions in PV–EC systems. Finally, it discusses the challenges that hinders high solar‐to‐hydrogen efficiency and suggests future research directions to enhance practical applications.

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Cite This Study

Dou et al. (2026) studied this question.

synapsesocial.com/papers/6a1d22f702fbce9130638988https://doi.org/10.1002/ece2.70084
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