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4. Chiral catalysts can be designed to favor the formation of one enantiomer over another in reactions where a new chiral cen

b. The chart below reports the data when the (S)-selective catalyst was used in various solvents. The enantiomeric excess (re

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Answer #1

(a)

(a) When product is When the it is used; the major Senantiomer &shown below)! ů Oct Etorey H When the cut is used the major p

-. s- product will be (x+24) % - + x +24 = 100 ✓ 2X = 100-24= 76 → Rs 76 = 38% Total of so and R- product 2100 7Therfore,

% R = x = 38 % (See picture above)

% S = (100-38) % = 62 %

Similar calculations for the other solvent would yield the following data (shown in table):

Solvent % ee of (S)-product % Yield of total product % S % R
Toluene 24 55 62 38
THF 48 33 74 26
Acetonitrile 72 55 86 14
Chloroform 30 40 65 35
Dichloromethane 46 44 73 27
Hexane 51 30 75.5 24.5

# The solvent, Acetonitrile, gives the optimal results in terms both the enantiselectivity (highest percentage of S-product formed= 86%) and overall product yield (highest % of total product = 55%).

Note: Here, toluene has the same % yield of total product but its enantioselectivity is very poor at just 62% (least among the solvents).

# The solvent that performed the worst is hexane because if we take 75.5 % of the total yield of just 30 % which is 22.65% S-product. This is the least among all the solvents. Therefore, both the enantioselectivity towards the S-product and the overall yield is the poorest in hexane.

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