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고분자가공/복합재료/재활용
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Molecular and Nanoarchitecturing Strategies of Functional Porous Materials with Their Composites for Catalytic Applications
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Functional porous materials, both organic and inorganic, feature diverse nanoarchitectures and promising properties. They can be synthesized through molecular design, surface coating, etching, and complexation, making them ideal for energy and environmental applications such as electrocatalysts, CO2 conversion, and chemical warfare agent detoxification. Their tunable nanostructures enhance adaptability by increasing reactive sites and improving diffusivity. This study explores strategies for synthesizing these materials via molecular and nanostructural control of metal-organic framework (MOF)-based materials and their composites. Enhanced properties for applications in electrochemical reactions, CO2 cycloaddition, and detoxification are achieved through precise molecular control and nanoarchitecturing. In summary, the advanced synthesis of functional porous materials offers significant potential for addressing challenges in catalysis, CO2 conversion, and detoxification.
발표코드
2O3-4 (16:40-17:00)
발표일정
2006-04-07 11:00 - 12:50