Problem 2
Repatriation of remains in the Middle Ages. Racemization at ambient temperature is slow and can be used for dating and for studying the thermal history of biological objects. L-isoleucine, , epimerizes at the -carbon to D-allo-isoleucine, . (a) The four stereoisomers are L-isoleucine (2S,3S), D-isoleucine (2R,3R), L-allo-isoleucine (2S,3R), D-allo-isoleucine (2R,3S). Which statement is true about D-allo-isoleucine vs L-isoleucine: identical/opposite/different specific rotations; same or different melting points? (b) The equilibrium constant of epimerization is at 374 K. Taking the standard Gibbs energy of L-isoleucine as 0 kJ mol, give the Gibbs energies of all four stereoisomers at 374 K. (c) What is the maximum number of stereoisomers of the tripeptide Ile–Ile–Ile? (d) Neglecting the reverse reaction, epimerization is first-order with h and h. Define the diastereomeric excess . Boiling L-isoleucine for 1943 h at 374 K: what is (i) before and (ii) after boiling? (e) How long does conversion of 10% of L-isoleucine to D-allo-isoleucine take at 298 K? (f) Accounting for the reverse reaction, decays as . For 1.00 mol dm L-isoleucine boiled 1943 h at 374 K, find and .
Step 2 of 6: Gibbs energies of the four stereoisomers
Analysis
The allo forms are more stable by kJ mol. Enantiomers have identical energies, so L-Ile = D-Ile = 0 and L-allo = D-allo = kJ mol.