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Titlebook: Handbook of Macrocyclic Supramolecular Assembly; Yu Liu,Yong Chen,Heng-Yi Zhang Reference work 2020 Springer Nature Singapore Pte Ltd. 202

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Cyclodextrin Hybrid Inorganic Nanocomposites for Molecular Recognition, Selective Adsorption, and Drcules and supramolecules onto inorganic nanoscaffolds. Macrocyclic organic molecules, such as crown ethers, cryptands, calixarenes, cucurbiturils, pillararene, and cyclodextrins, have frequently been used as building blocks for supramolecular hybrid inorganic materials. These macrocyclic molecules a
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Photoresponsive Supramolecular Polymers Based on Host-Guest Interactionslecular polymers, which can combine the unique properties of supramolecular polymers with the advantages of photochemical reactions. This chapter summarizes the recent progress on photoresponsive supramolecular polymers based on different hosts, including cyclodextrin (CD), cucurbituril (CB), crown
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Host-Guest Chemistry of a Tetracationic Cyclophane, Namely, Cyclobis (paraquat-,-phenylene)locked molecules including rotaxanes and catenanes containing . as a macrocyclic building block whose switchable features have been taken advantage of in the design of molecular switches and machines; and (v) the extended derivatives of .. Even although a few other groups also employed . ring for se
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Photoluminescent Crown Ether Assemblynt crown ether assembly based on rotaxanes/pseudorotaxanes/pseudopolyrotaxanes and complexes with small guest molecules. We envisage that this chapter will stimulate new inspirations for chemists and encourage continued endeavors in photoluminescent crown ether assembly and further push forward the
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Supramolecular Medicine of Diverse Calixarene Derivativesine to rise supramolecular medicine, the medical area focusing on the application of supramolecular recognition and assembly to improve the modern medical level. Broadly speaking, supramolecular medicine can be defined as the supramolecular agents for the prevention, diagnosis, and treatment of dise
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Preparation of Biosensor Based on Supermolecular Recognizations with molecular sizes. The unique properties of supermolecular recognization hold great promise for practical applications in a wide variety of technological fields, such as sensing analysis, molecular imaging, metal extraction, and drug delivery [3–7].
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