1-Chloro-4-isopropylcyclohexane exists as two stereoisomers: one cis and one trans. Treatment of either isomer with sodium ethoxide in ethanol gives 4-isopropylcyclohexene by an E2 reaction. 1- Chloro-4- isopropylcyclohexane 4-Isopropylcyclohexene CH3CH2O Na+ CH3CH2OH Cl The cis isomer undergoes E2 reaction several orders of magnitude faster than the trans isomer. How do you account for this experimental observation?
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Textbook Solutions for Organic Chemistry
Question
Each of these compounds can be synthesized by an SN2 reaction. Suggest a combination of haloalkane and nucleophile that will give each product. (a) CH3OCH3 (b) CH3SH (c) CH3CH2CH2PH2 (d) CH3CH2CN (e) CH3SCH2C(CH3)3 (f) (CH3)3NH+ Cl2 O C6H5COCH2C6H5 (g) N3 (R)-CH3CHCH2CH2CH3 (h) (i) CH2"CHCH2OCH(CH3)2 ( j) CH2"CHCH2OCH2CH"CH2 (k) 1N H Cl2 H (l) O O
Solution
The first step in solving 9 problem number 51 trying to solve the problem we have to refer to the textbook question: Each of these compounds can be synthesized by an SN2 reaction. Suggest a combination of haloalkane and nucleophile that will give each product. (a) CH3OCH3 (b) CH3SH (c) CH3CH2CH2PH2 (d) CH3CH2CN (e) CH3SCH2C(CH3)3 (f) (CH3)3NH+ Cl2 O C6H5COCH2C6H5 (g) N3 (R)-CH3CHCH2CH2CH3 (h) (i) CH2"CHCH2OCH(CH3)2 ( j) CH2"CHCH2OCH2CH"CH2 (k) 1N H Cl2 H (l) O O
From the textbook chapter Nucleophilic Substitution and b-Elimination you will find a few key concepts needed to solve this.
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