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Systems Based on Calixarenes as the Basis for the Creation of Catalysts and Nanocontainers

Systems Based on Calixarenes as the Basis for the Creation of Catalysts and Nanocontainers

Phosphorylation of p-tert-butyl(thia)calixarenes by ethylene chlorophosphiteThe one-step synthesis of a macrocyclic node was performed by the interaction of thiacalix[4]arene

Lipophilic aminophosphonates and their calix[4]arene derivatives: synthesis and membrane transport of biorelevant species

Membrane Extraction of Organic Compounds. I. α-Amino Phosphonates as Carriers for α-Hydroxy- and α-Aminoacids. The kinetics of membrane transport of a series of α-hydroxy and α-aminoacids across a Teflon matrix impregnated

Synthesis and complexation properties of 1,3-alternate stereoisomers of p-tert-butylthiacalix[4]arenes tetrasubstituted at the lower rim by the phthalimide group

Selective fluoride ion recognition by a thiacalix[4]arene receptor containing N-(4-nitrophenyl)acetamide and 1-amidoanthraquinone fragments and binding of some anions (F–, Cl–, Br–, I–, MeCO2-, H2PO4-, NO3-) was examined by UV spectroscopy, and a

Phosphorylation of p-tert-butylthiocalix[4]arene: Reaction with phosphorus trichloride stable. The flattened 1,2-alternate conformation of a P(IV) derivative was established by 1H, 13C, 31P

Phenylurea-equipped p-tert-butylthiacalix[4]arenes as the synthetic receptors for monocharged anions

Flow-Through Electrochemical Biosensor with a Replaceable Enzyme Reactor and Screen-Printed Electrode for the Determination of Uric Acid and TyrosineA flow-through biosensor has been developed and manufactured by 3D printing from poly(lactic acid

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