图书简介
Porous Coordination Polymers: From Fundamentals to Advanced Applications offers a comprehensive coverage the latest advances in porous coordination polymers for cutting-edge applications. Porous Coordination Polymers are gaining increasing interest due to their attractive properties, such as structural flexibility, large surface area, tailorable pore size, and functional tunability, in turn enabling a wide range of possible applications which this book aims to highlight and to elucidate. The book begins by introducing porous coordination polymers, highlighting their structure, chemistry, basic properties, and design approaches. This is followed by a chapter focusing on synthetic methods and mechanical properties. Subsequent chapters provide in-depth coverage of specific target applications, explaining the preparation of porous coordination polymers for areas including catalysis and photocatalysis, environmental remediation, gas storage and separation, energy storage and conversion, new generation magnets, nanocarriers in therapeutics, and biomedical imaging. Finally, current challenges and future developments are considered in detail.
Porous coordination polymers: A brief Introduction. Approaches towards the synthesis and mechanical properties of porous coordination polymers. Progressive approach of porous coordination polymers towards catalysis and photocatalysis. Role of porous coordination polymers as chemical and biosensors in the remediation of environmental contaminants. Magnetic nano-composite of sugarcane bagasse/HKUST-1 for pesticides removal. Investigation of porous coordination polymers for gas storage and separation. 7.New advanced approach of ultra-fast synthesis of ultrahigh-BET-surface area crystalline/non-crystalline porous coordinated polymers. Porous Coordination Polymers in energy storage and conversion. Ions and electron conductive porous coordination polymers for energy applications. Conductive properties of triphenylene porous coordination polymers. Development of new generation magnets based on porous coordination polymers. Importance of porous coordination polymers as nanocarriers in therapeutics. Potentiality of nanoscale coordination polymers in biomedical imaging. Future prospects and grand challenges for porous coordination polymers.
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