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fysicochemie --- Macromolecules --- Molecular imprinting --- Imprinted polymers --- Monomers
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fysicochemie --- Macromolecules --- Molecular imprinting --- Imprinted polymers
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Imprinted polymers --- Molecular imprinting --- Molecular recognition
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Molecularly Imprinted Polymers (MIPs): Commercialization Prospects guides the reader through the various steps in the conceptualization, design, preparation and innovative applications of molecularly imprinted polymers while also demystifying the challenges relating to commercialization. Sections cover molecularly imprinted polymers, design, modeling, compositions and material selection. Other sections describe novel methods and discuss the challenges relating to the use of molecularly imprinted polymers in specific application areas. The final chapters of the book explore the current situation in terms of patents and commercialized materials based on MIPs, as well as prospects and possible opportunities. This is a valuable resource for all those with an interest in the development, application, and commercialization of molecularly imprinted polymers, including researchers and advanced students in polymer science, polymer chemistry, nanotechnology, materials science, chemical engineering, and biomedicine, as well as engineers, scientists and R&D professionals with an interest in MIPs for advanced applications.
Plastics industry and trade. --- Imprinted polymers. --- Molecular imprinting.
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Molecular imprinting. --- Xerogels. --- Chemical detectors --- Biosensors --- Explosives --- Testing. --- Detection.
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This book is divided into 5 sections starting with an historic perspective and fundamental aspects on the synthesis and recognition by imprinted polymers. The second section contains 8 up-to-date overview chapters on current approaches to molecular and ion imprinting. This is followed by two chapters on new material morphologies and in the last two sections various analytical applications of imprinted polymers are given, with the last four chapters devoted to the promising field of imprinted polymers in chemical sensors. The authors of this volume have widely different backgrounds; mainly
Macromolecules --- fysicochemie --- Imprinted polymers. --- Molecular imprinting. --- Imprinting, Molecular --- Imprinting, Polymer --- Polymer imprinting --- Polymerization --- Polymers --- Imprinted polymers --- Molecular imprinting
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Molecular imprinting --- Imprinted polymers --- Imprinted polymers. --- Molecular imprinting. --- Imprinting, Molecular --- Imprinting, Polymer --- Polymer imprinting --- polymers --- imprinting --- separation --- sensors --- biomedical materials --- Polymerization --- Polymers
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This handbook provides a useful guide to preparing molecularly imprinted polymers (MIPs) for diverse practical applications. The first chapter covers the general aspects of molecular imprinting technology. The following chapters focus on specific applications, such as MIPs for sample concentration, MIPs for chromatography and related techniques, MIPs as sensor components, MIPs as traps for medical and bioremediation, MIPs as catalysts and artificial enzymes, and MIPs as components of drug delivery systems. All chapters of the handbook follow a common structure: interest of the MIP approach fo
Imprinted polymers. --- Molecular imprinting. --- Imprinting, Molecular --- Imprinting, Polymer --- Polymer imprinting --- Polymerization --- Polymers
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Molecular imprinting. --- Imprinted polymers. --- Polymers --- Imprinting, Molecular --- Imprinting, Polymer --- Polymer imprinting --- Polymerization
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