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Conference Overview:

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The International Conference on Metal-Organic Framework and Porous Organic Polymers for Energy and Sustainability 2026 provides a dynamic platform for scientists, engineers, and industry leaders to explore cutting-edge advancements in porous materials and their vital role in energy and environmental sustainability. This conference served as a multidisciplinary platform to delve into the design, synthesis, and application of these advanced materials, with a special emphasis on addressing global challenges in energy storage, conversion, and environmental sustainability.

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Recognized for their high surface areas, tunable porosity, and versatile chemical functionality, MOFs and POPs are at the forefront of addressing global challenges such as clean energy production, carbon management, and environmental remediation. Bringing together interdisciplinary expertise from synthetic chemistry, materials science, catalysis, and environmental engineering, computational design and modelling. The conference fosters in-depth discussions on the design, synthesis, and functionalization of these materials. Emphasis is placed on fundamentals and applications in energy storage and conversion, gas storage and separation, carbon capture, water harvesting, catalysis, and renewable energy systems. By facilitating collaboration among academia, and industry, the event aims to accelerate the development and real-world deployment of MOF and POP-based technologies for a more sustainable, low-carbon future.

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Featuring talks from speakers around the globe, along with technical sessions and panel discussions, the conference highlighted cutting-edge advancements and real-world applications, while fostering collaboration across chemistry, materials science, chemical engineering, and environmental science.

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Theme of the Conference

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  • Design, synthesis and functionalization of MOFs and POPs​

  • Computation design and modelling of MOFs and POPs

  • Energy storage and conversion

  • Gas storage and separation

  • Carbon capture and conversion

  • Water harvesting

  • Catalysis​

  • Advanced characterizations and emerging applications

MOFES'26 Copyright © 2025 by MolMat Lab.

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