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- W2056544997 abstract "Interpenetrated molecules have attracted increasing attention from chemists not only because of their intriguing architectures and topologies, but also as a result of potential applications in molecular machinery and nanotechnology. In this account we review recent efforts on the construction of interpenetrated molecules based on the molecular recognition toward some positively charged axle components in aqueous or organic medium. We mainly focus on guest molecules containing ammonium, anilinium, and pyridinium groups. The host molecules are cucurbiturils and crown ethers. 1Introduction 2Interpenetrated Molecules Based on Crown Ethers 2.1Thermodynamics of Resulting Complexes Between Dibenzo-24-crown-8 Derivatives and 1,2-Bis(pyridinium)ethanes 2.2Molecular Switches Based on Positively Charged Molecules and Crown Ethers 2.3Interlocked Molecules Based on Positively Charged Molecules and Crown Ethers 3Interpenetrated Molecules Based on Cucurbiturils 3.1Reversible 2D Pseudopolyrotaxanes and their Applications in DNA Condensation 3.2Pseudorotaxanes Based on Bipyridinium Derivatives and Cucurbiturils 3.3Stabilization of Radical Cations in Pseudopolyrotaxanes Based on Cucurbituril and Polyaniline 4 Conclusion and Outlook" @default.
- W2056544997 created "2016-06-24" @default.
- W2056544997 creator A5018073672 @default.
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- W2056544997 date "2012-08-30" @default.
- W2056544997 modified "2023-09-27" @default.
- W2056544997 title "ChemInform Abstract: Construction and Function of Interpenetrated Molecules Based on the Positively Charged Axle Components" @default.
- W2056544997 doi "https://doi.org/10.1002/chin.201239251" @default.
- W2056544997 hasPublicationYear "2012" @default.
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