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Modern Trends of Organic Chemistry in Russian Universities

Functional supramolecular systems: Design and applications and technologies, able to fundamentally change the world, is growing at a high pace. The huge array of publications

Nanostructured polyelectrolyte complexes based on water-soluble thiacalix[4]Arene and pillar[5]arene: Self-assembly in micelleplexes and polyplexes at packaging DNA of macrocyclic compounds offers new opportunities in design of a new generation of mixed nanoparticles

Metallo-Supramolecular Coordination Polymers Based on Amidopyridine Derivatives of Pillar[5]arene and Cu(II) and Pd(II) Cations: Synthesis and Recognition of Nitroaromatic Compounds supramolecular associates with Cu(II) and Pd(II) cations in methanol in a 2:1 ratio. Using a sol-gel approach

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

Water-soluble pillar[5]arene sulfo-derivatives self-assemble into biocompatible nanosystems to stabilize therapeutic proteins bioavailability. Regioselective synthesis was used to obtain a water-soluble pillar[5]arene containing

2D monomolecular nanosheets based on thiacalixarene derivatives: Synthesis, solid state self-assembly and crystal polymorphism rim in cone and 1,3-alternate conformations, that are capable of controlled self-assembly in a 2D

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

Membrane extraction of organic compounds 3. A new receptor fragment for carboxylate groups based of the calix[4]arene platformA new type of macrocyclic receptor able to bind organic substrates containing carboxy

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

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