CHM136H1 Study Guide - Midterm Guide: Stereocenter, Optical Rotation, Stereochemistry

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CHM136H1 Full Course Notes
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5-1 enantiomers and the tetrahedral carbon, 5-2 chirality. Chiral molecule: non-superimposable (not identical) to mirror images ~ non-symmetrical, make sure to consider 3d images, chirality centres. Usually tetrahedral carbon atom bonded to four di erent groups: pair of enantiomers. Enantiomers have identical physical properties: interact with other chiral molecules/environment, optically active. Pass plane-polarized light: one enantiomer rotates light cw, one enantiomers rotates light acw. Pasteur discovered optical isomers when studying crystalline acid salts from wine: 2 distinct kinds of crystals. Rank 4 groups on chiral carbon: cahn-ingold-prelog rules, rank according to atomic number. If rst atoms are same - look at 2nd, 3rd, 4th until di erent multiple-bonded atoms = same number of single bonded atoms. Rotate molecule so lowest priority group at back. Draw arrow from highest > lowest: cw - r con guration, acw - s con guration. If more than one chiral centre - specify r/s for which chiral centre.

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