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The microcavity size and size distribution were found to be sensitively affected by the substituent groups in the pentiptycene monomer structure based on the mechanism of "partial filling" of internal molecular cavities defined by the shape of pentiptycene units.
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Density attributed to a sodium ion has been found by computer modeling in a cavity defined by these residues.
We could prepare molecular cavities with different sizes and shapes.
By means of molecular imprinting of a conducting polymer, molecular cavities selective for oxytocin nonapeptide, an autism biomarker, were designed.
This resulted in molecular cavities complementary to the template in the imprinted polymer texture.
In most cases, recognition of an analyte by molecular cavities, imprinted for its determination, is necessary.
To prepare MIP films with the highest density of imprinted molecular cavities, different electropolymerization conditions were examined.
For this, the isodensity polarisable continuum model (IPCM) provides an efficient way to consider the solvent effect as it defines the molecular cavity as a contour surface of constant electron probability density of the molecule [30].
The inner surface of their molecular cavity is hydrophobic, because it is lined with the glycosidic oxygen bridges.
The molecular cavity was specified using a minimum radius (RMin) of 0.5Ǻ and an overlap index (OFac) of 0.8 [39].
The diffusion behavior and solubility of gases in the molecular cavity were also simulated.
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