4.10
Recall that any tetrahedral center with four different functional groups is chiral.
While this property is commonly observed in carbon, it holds true for other elements in the same group, such as silicon and germanium, or in nearby groups like nitrogen, phosphorus, and sulfur. As such, they form enantiomers that are resolvable.
Replacing one of the four different functional groups by an electron pair also forms a chiral tetrahedral center. For instance, an sp3 nitrogen in ethylmethylamine is a chiral tetrahedral center, as its mirror image is non-superposable.
In principle, while the enantiomers of chiral amines are resolvable, they cannot be separated due to pyramidal inversion. As with an umbrella exposed to a storm, the chiral amine turns itself inside out spontaneously, resulting in a racemic mixture.
However, pyramidal inversion is not possible in quaternary ammonium salts, such as allylethylmethylphenyl ammonium chloride, allowing easy resolution of R- and S- enantiomers.
Similarly, trivalent sp3 phosphorus compounds and sulfur compounds with lone pairs do not undergo pyramidal inversion as readily because it is less energetically favorable. As such, they are easily resolvabl
Chiraliteit komt het meest voor in op koolstof gebaseerde tetraëdrische verbindingen, maar dit belangrijke aspect van moleculaire symmetrie strekt zic…
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