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Liam C Palmer

Publications and source records attributed to Liam C Palmer.

7 recordsLinked to original sources

Resorcinarenes are hexameric capsules in solution.

The host-guest complexes of resorcin[4]arenes with small molecules in organic solutions are examined using modern NMR spectroscopic methods. The complexation of glutaric acid and beta-methyl d-glucopyranoside in chloroform were investigated through 2D COSY, 2D NOESY, 1D NOE, and diffusion-ordered NMR spectroscopy (DOSY) techniques. These methods indicate that the complex is a self-assembled capsule composed of six resorcinarenes that surround six guest molecules of glutaric acid or three molecules of beta-methyl d-glucopyranoside inside. The multiplicity of guest proton signals shows that the capsule provides an asymmetric magnetic environment that persists on the (1)H NMR time scale. The encapsulation of these guests and common solvents suggests that the phenomenon of reversible encapsulation in chemistry may be a century old.

Calixarenes↗

Resorcinarene assemblies as synthetic receptors.

The host-guest complexes of resorcinarenes are re-examined in solution through modern spectroscopic methods; the assemblies are characterized by 1H NMR and the guest exchange rates are measured by EXSY NMR spectroscopy.

Calixarenes↗

The ins and outs of molecular encapsulation.

Molecular capsules can act as hosts for appropriate guests, and bring them into well-defined nanoenvironments. Various spectroscopic methods have been used to deduce the mechanism of guest exchange in such systems. Generally, the guests get in and out of capsules through the opening and closing of host "flaps" but smaller capsules can exchange simply by dissociation of the host subunits.

Calixarenes↗