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March 23, 2026Advanced Materials2 citationsOpen Access

Functional Metal Complexes for Solar–Light‐Driven Energy Conversion

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YQYun QinDLDou LuoMZMiao Zhang

Key Points

  • The research aims to review recent advancements in functional metal complexes used for solar energy conversion.
  • Review of latest advancements in metal complex design.
  • Examination of energy storage and conversion applications.
  • Analysis of challenges in the development of metal complexes.
  • Highlights breakthroughs in solar-to-electrical, -chemical, and -thermal energy conversion.
  • Discusses the importance of tunable photoelectrochemical and photophysical properties.
  • Addresses current challenges and outlines future directions in this field.

Abstract

ABSTRACT Solar energy conversion offers the advantage of being more environmentally friendly compared to the use of nuclear or fossil fuels. In recent years, metal complexes as functional materials have received extensive attention, and great progress has been made in energy storage and conversion. They usually possess tunable photoelectrochemical properties due to the diversity of organic ligands and metal centers. Moreover, the photophysical properties of metal complexes, particularly their strong ability to capture visible light and achieve long triplet state lifetimes, are essential for the effective utilization of these complexes in their practical applications. In this review, we examine the latest advancements in the design of the state‐of‐the art metal complexes and highlight key breakthroughs of these complexes, particularly in solar‐to‐electrical, ‐chemical, and ‐thermal energy conversion applications. We also address the current challenges and outline future directions for the development of functional metal complexes in the field of solar‐light‐driven energy conversion.

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Cite This Study

Qin et al. (2026) studied this question.

synapsesocial.com/papers/69c08b6ba48f6b84677f8837https://doi.org/10.1002/adma.202518393
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