ORG.CHEM W/TEXT+SOLU.MANUAL
ORG.CHEM W/TEXT+SOLU.MANUAL
15th Edition
ISBN: 9780393252125
Author: KARTY
Publisher: W.W.NORTON+CO.
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Chapter 7, Problem 7.26P
Interpretation Introduction

(a)

Interpretation:

Curved arrow and the product formed for the given nucleophilic addition step are to be drawn.

Concept introduction:

The curved arrow drawn from the nucleophile (electron rich species) to the polar pi-bond (electron poor species) represents the flow of electrons from an electron rich site to an electron poor site. The second curved arrow is drawn from the center of double or triple bond to the electronegative atom. A new bond is formed between the nucleophile and the electron deficient atom.

Expert Solution
Check Mark

Answer to Problem 7.26P

The curved arrow and the product formed in the given nucleophilic addition step is drawn as:

ORG.CHEM W/TEXT+SOLU.MANUAL, Chapter 7, Problem 7.26P , additional homework tip  1

Explanation of Solution

In the given nucleophilic addition step is:

ORG.CHEM W/TEXT+SOLU.MANUAL, Chapter 7, Problem 7.26P , additional homework tip  2

In this step, CH3OK is treated as CH3O- which acts as a nucleophile (electron rich site) whereas carbonyl carbon acts as an electrophile (electron poor site). Thus, the first curved arrow is drawn from CH3O- to the electron poor C atom of C = O, and the second curved arrow is drawn from the middle of C = O bond to O atom.

Thus, the curved arrows for the given nucleophilic addition step are drawn as:

ORG.CHEM W/TEXT+SOLU.MANUAL, Chapter 7, Problem 7.26P , additional homework tip  3

The new bond in the product is formed between the electron rich O atom from the nucleophile and the electron poor C atom of the carbonyl group.

Conclusion

The curved arrow represents the flow of electrons from an electron rich site to an electron poor site.

Interpretation Introduction

(b)

Interpretation:

Curved arrow and the product formed for the given nucleophilic addition step are to be drawn.

Concept introduction:

The curved arrow drawn from the nucleophile (electron rich species) to the polar pi-bond (electron poor species) represents the flow of electrons from an electron rich site to an electron poor site. The second curved arrow is drawn from the center of double or triple bond to the electronegative atom. A new bond is formed between the nucleophile and the electron deficient atom.

Expert Solution
Check Mark

Answer to Problem 7.26P

The curved arrow and the product formed in the given nucleophilic addition step is drawn as:

ORG.CHEM W/TEXT+SOLU.MANUAL, Chapter 7, Problem 7.26P , additional homework tip  4

Explanation of Solution

In the given nucleophilic addition step is:

ORG.CHEM W/TEXT+SOLU.MANUAL, Chapter 7, Problem 7.26P , additional homework tip  5

In this step CH3Li is treated as CH3- which acts as a nucleophile (electron rich site) whereas carbonyl carbon acts as an electrophile (electron poor site). Thus, the first curved arrow is drawn from CH3- to the electron poor C atom of C = O, and the second curved arrow is drawn from the middle of C = O bond to O atom.

Thus, the curved arrows for the given nucleophilic addition step are drawn as:

ORG.CHEM W/TEXT+SOLU.MANUAL, Chapter 7, Problem 7.26P , additional homework tip  6

The new bond in the product is formed between electron rich C atom from the nucleophile and electron poor C atom of the carbonyl group.

Conclusion

The curved arrow represents the flow of electrons from electron rich site to electron poor site.

Interpretation Introduction

(c)

Interpretation:

Curved arrow and the product formed for the given nucleophilic addition step are to be drawn.

Concept introduction:

The curved arrow drawn from the nucleophile (electron rich species) to the polar pi-bond (electron poor species) represents the flow of electron from an electron rich site to an electron poor site. The second curved arrow is drawn from the center of double or triple bond to the electronegative atom. A new bond is formed between the nucleophile and the electron deficient atom.

Expert Solution
Check Mark

Answer to Problem 7.26P

The curved arrow and the product formed in the given nucleophilic addition step is drawn as:

ORG.CHEM W/TEXT+SOLU.MANUAL, Chapter 7, Problem 7.26P , additional homework tip  7

Explanation of Solution

In the given nucleophilic addition step is:

ORG.CHEM W/TEXT+SOLU.MANUAL, Chapter 7, Problem 7.26P , additional homework tip  8

In this step C6H5MgBr is treated as C6H5- which acts as nucleophile (electron rich site) whereas carbon atom of CN acts as an electrophile (electron poor site). Thus, the first curved arrow is drawn from C6H5- to the electron poor C atom of CN, and the second curved arrow is drawn from the middle of CN bond to N atom.

Thus, the curved arrows for the given nucleophilic addition step are drawn as:

ORG.CHEM W/TEXT+SOLU.MANUAL, Chapter 7, Problem 7.26P , additional homework tip  9

The new bond in the product is formed between electron rich C atom from the nucleophile and electron poor C atom.

Conclusion

Curved arrow represents the flow of electrons from electron rich site to electron poor site.

Interpretation Introduction

(d)

Interpretation:

Curved arrow and the product formed for given nucleophilic addition step are to be drawn.

Concept introduction:

The curved arrow drawn from the nucleophile (electron rich species) to the polar pi-bond (electron poor species) represents the flow of electron from an electron rich site to an electron poor site. The second curved arrow is drawn from the centre of double or triple bond to the electronegative atom. A new bond is formed between the nucleophile and the electron deficient atom.

Expert Solution
Check Mark

Answer to Problem 7.26P

The curved arrow and the product formed in the given nucleophilic addition step is drawn as:

ORG.CHEM W/TEXT+SOLU.MANUAL, Chapter 7, Problem 7.26P , additional homework tip  10

Explanation of Solution

In the given nucleophilic addition step is:

ORG.CHEM W/TEXT+SOLU.MANUAL, Chapter 7, Problem 7.26P , additional homework tip  11

In this step NaBH4 is treated as H- acts as a nucleophile (electron rich site) whereas carbonyl carbon acts as an electrophile (electron poor site). Thus, the first curved arrow is drawn from H- to the electron poor C atom of C = O, and the second curved arrow is drawn from the middle of C = O bond to O atom.

Thus, the curved arrows for the given nucleophilic addition step are drawn as:

ORG.CHEM W/TEXT+SOLU.MANUAL, Chapter 7, Problem 7.26P , additional homework tip  12

The new bond in the product is formed between the electron rich H atom from the nucleophile and the electron poor C atom of the carbonyl group.

Conclusion

Curved arrow represents flow of electrons from electron rich site to electron poor site.

Interpretation Introduction

(e)

Interpretation:

Curved arrow and the product formed for given nucleophilic addition step are to be drawn.

Concept introduction:

The curved arrow drawn from the nucleophile (electron rich species) to the polar pi-bond (electron poor species) represents the flow of electron from an electron rich site to an electron poor site. The second curved arrow is drawn from the center of double or triple bond to the electronegative atom. A new bond is formed between the nucleophile and the electron deficient atom.

Expert Solution
Check Mark

Answer to Problem 7.26P

The curved arrow and the product formed in the given nucleophilic addition step is drawn as:

ORG.CHEM W/TEXT+SOLU.MANUAL, Chapter 7, Problem 7.26P , additional homework tip  13

Explanation of Solution

In the given nucleophilic addition step is:

ORG.CHEM W/TEXT+SOLU.MANUAL, Chapter 7, Problem 7.26P , additional homework tip  14

In this step NaOH is treated as HO- which acts as nucleophile (electron rich site) whereas carbonyl carbon acts as an electrophile (electron poor site). Thus, the first curved arrow is drawn from HO- to the electron poor C atom of C = O, and the second curved arrow is drawn from the middle of C = O bond to O atom.

Thus, the curved arrows for the given nucleophilic addition step are drawn as:

ORG.CHEM W/TEXT+SOLU.MANUAL, Chapter 7, Problem 7.26P , additional homework tip  15

The new bond in the product is formed between electron rich O atom from the nucleophile and electron poor C atom of the carbonyl group.

Conclusion

Curved arrow represents the flow of electrons from electron rich site to electron poor site.

Interpretation Introduction

(f)

Interpretation:

Curved arrow and the product formed for the given nucleophilic addition step are to be drawn.

Concept introduction:

The curved arrow drawn from the nucleophile (electron rich species) to the polar pi-bond (electron poor species) represents the flow of electron from an electron rich site to an electron poor site. The second curved arrow is drawn from the center of double or triple bond to the electronegative atom. A new bond is formed between the nucleophile and the electron deficient atom.

Expert Solution
Check Mark

Answer to Problem 7.26P

The curved arrow and the product formed in the given nucleophilic addition step is drawn as:

ORG.CHEM W/TEXT+SOLU.MANUAL, Chapter 7, Problem 7.26P , additional homework tip  16

Explanation of Solution

In the given nucleophilic addition step is:

ORG.CHEM W/TEXT+SOLU.MANUAL, Chapter 7, Problem 7.26P , additional homework tip  17

In the above step, COCH3- which acts as a nucleophile (electron rich site) whereas carbonyl carbon acts as an electrophile (electron poor site). Thus, the first curved arrow is drawn from CH3O- to the electron poor C atom of C = O, and the second curved arrow is drawn from the middle of C = O bond to O atom.

Thus, the curved arrows for the given nucleophilic addition step are drawn as:

ORG.CHEM W/TEXT+SOLU.MANUAL, Chapter 7, Problem 7.26P , additional homework tip  18

The new bond in the product is formed between the electron rich C atom from the nucleophile and the electron poor C atom of the carbonyl group.

Conclusion

Curved arrow represents the flow of electrons from electron rich site to electron poor site.

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By following the curved red arrows, draw the product(s) of each of the following reaction steps:
By following the curved red arrows, draw the product(s) of each of the following reaction steps. Also indicate which species is the electrophile and which is the nucleophile.
Draw out detailed mechanism (with curved arrows) for the above reaction.
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