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September 30, 2025Advanced Functional Materials0 citationsOpen Access

Advances in Stimuli‐Responsive Organic Materials and Polymers toward Intelligent CO2 Capture

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JZJian ZhouMDM. DeissenrothMGMarkus Gallei

Key Points

  • Stimuli-responsive organic materials enhance CO2 capture efficiency and recyclability, leading to promising climate change solutions.
  • Recent developments include covalent organic frameworks and metal organic frameworks that react to external conditions, showing potential for tunability.
  • The review analyzes mechanisms of multi-stimuli responses, fostering designs for scalable, energy-efficient CO2 capture technologies.
  • These materials provide a sustainable approach for CO2 adsorption and desorption, with applications in both fundamental and industrial contexts.

Abstract

Abstract Recent advances in carbon dioxide (CO 2 ) capture highlight the potential of stimuli‐responsive organic materials and polymers as low‐energy, tunable solutions for climate change. This review summarizes developments in covalent organic frameworks (COFs), metal organic frameworks (MOFs), porous organic polymers (POPs), and related organic materials that respond to external stimuli such as temperature, light, pH, redox, magnetism, and pressure for CO 2 capture. These materials enable controllable CO 2 adsorption and desorption, offering improved efficiency, selectivity, and recyclability. By outlining key mechanisms and feasibility of multi‐stimulations, this review aims to support the rational design of scalable, energy‐efficient stimuli‐responsive materials for fundamental and industrial research of CO 2 capture.

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Cite This Study

Zhou et al. (2025) studied this question.

synapsesocial.com/papers/68dc26268a7d58c25ebb3124https://doi.org/10.1002/adfm.202520959
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