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May 20, 2026Molecules0 citationsOpen Access

Melanin-like Materials for Photothermal Applications: Recent Advancements and Future Directions

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YZYuan ZouJDJie DengJYJingluan Yu

Key Points

  • The aim is to review recent advancements in melanin-like polymers for diverse photothermal applications.
  • Comprehensive literature review of recent advances in melanin-like polymers
  • Analysis of applications in biomedical engineering, catalysis, and water remediation
  • Evaluation of challenges and future perspectives for these materials
  • Melanin-like polymers exhibit high efficiency in photothermal therapy (specific parameters not provided)
  • Photothermal effects enhance pollutant degradation and detoxification processes
  • Materials demonstrate potential in applications like solar-driven steam generation and soft actuators

Abstract

Melanin-like polymers, particularly polydopamine, have gained significant attention as photothermal materials due to their broad light absorption (ultraviolet to near-infrared), high photothermal conversion efficiency, negligible fluorescence, good biocompatibility regarding unmodified melanin-like polymers, and universal adhesion. Upon light irradiation, these bioinspired polymers convert absorbed optical energy into heat through molecular vibration and electron–phonon coupling, making them ideal for diverse photothermal applications. This review comprehensively summarizes recent advances in using melanin-like polymers for photothermal purposes. In biomedical engineering, they serve as efficient agents for photothermal therapy and synergistic antibacterial treatment. In catalysis, their photothermal effect enhances pollutant degradation, hydrogen production, and chemical warfare agent detoxification. For water remediation, melanin-like polymers are fabricated into evaporators, membranes, and aerogels for solar-driven steam generation, desalination, and oil spill cleanup. They also enable sensitive photothermal sensing, near-infrared imaging, and laser desorption ionization mass spectrometry imaging. Furthermore, these materials are incorporated into soft actuators and self-healing elastomers for light-controlled shape memory, programmable folding, and remote manipulation. Finally, we discuss remaining challenges such as long-term stability, biocompatibility, scalability, and color limitations and provide future perspectives for advancing melanin-like photothermal materials toward practical applications.

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Cite This Study

Zou et al. (2026) studied this question.

synapsesocial.com/papers/6a0d5025f03e14405aa9bc14https://doi.org/10.3390/molecules31101712
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