Designed self-assembly of a bimolecular calix[4]resorcinarene capsuleheld together by hydrogen bonds
Author:
Publisher
Elsevier BV
Subject
Inorganic Chemistry,Organic Chemistry,Spectroscopy,Analytical Chemistry
Reference20 articles.
1. Container molecules and their guests,;Cram,1994
2. Molecular recognition. 5. Molecular recognition of sugars via hydrogen-bonding interaction with a synthetic polyhydroxy macrocycle
3. Molecular recognition. 8. Two-point hydrogen-bonding interaction: a remarkable chain-length selectivity in the binding of dicarboxylic acids with resorcinol-aldehyde cyclotetramer as a multidentate host
4. Molecular recognition. 18. Complexation of chiral glycols, steroidal polyols, and sugars with a multibenzenoid, achiral host as studied by induced circular dichroism spectroscopy: exciton chirality induction in resorcinol-aldehyde cyclotetramer and its use as a supramolecular probe for the assignments of stereochemistry of chiral guests
5. Chiral Host-Guest Interaction. A Water-Soluble Calix[4]resorcarene Having L-Proline Moieties as a Non-Lanthanide Chiral NMR Shift Reagent for Chiral Aromatic Guests in Water
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1. Functional modification, self-assembly and application of calix[4]resorcinarenes;Journal of Inclusion Phenomena and Macrocyclic Chemistry;2022-01-11
2. Supramolecular structures and crystal stability of diisobutylaminomethylated calix[4]resorcinarenes;Journal of Inclusion Phenomena and Macrocyclic Chemistry;2020-07-08
3. Calixarene-based pure and mixed assemblies for biomedical applications;Supramolecular Chemistry;2020-02-13
4. Self-assembly of phenyl-bis-(4,5-dihydroxy-2,7-disulfonato-3-naphthyl)methane, tetrasodium salt into a dimer through hydrogen bonding in water: Evidence from its encapsulation of monosubstituted benzenes, phenols, and polyaromatic hydrocarbons in water;Journal of Chemical Research;2019-10-29
5. Structure and stoichiometry of resorcinarene solvates as host–guest complexes – NMR, X-ray and thermoanalytical studies;Thermochimica Acta;2016-01
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