(a)
Interpretation:
The synthesis of N, N-Disubstituted amide from benzene as the only starting material is to be shown.
Concept introduction:
Electrophilic addition reactions disturb benzene’s aromaticity forever. Electrophilic
For incorporate an amino group into a ring needs a substituent attached on the aromatic ring is attached by a carbon atom. This requires the benzylic carbon to be bonded at least one hydrogen atom. Further, this nitro group can be transformed into an amino group. This reduction can be carried out either by catalytic hydrogenation under acidic conditions followed by treatment with
(b)
Interpretation:
The synthesis of imine from benzene as the only starting material is to be shown.
Concept introduction:
Electrophilic addition reactions finish benzene’s aromaticity forever. Electrophilic aromatic substitution reactions grant the permission to incorporate lots of substituents onto an aromatic ring, however, most of the substituent cannot be put in place directly to the aromatic ring. To incorporate these kinds of the substituents on the benzene ring by first using electrophilic aromatic substituents reaction to incorporate different substituents that are subsequently transformed into the desired product. A Friedel–Crafts acylation of benzene is carried out with acyl chloride and lewis acid., which yield an aromatic ketone, in which C atom from benzene form a bond to the carbon atom of the acyl group.
For incorporate an amino group into a ring needs a substituent attached on the aromatic ring is attached by a carbon atom. This requires the benzylic carbon to be bonded at least one hydrogen atom. Further, this nitro group can be transformed into an amino group. This reduction can be carried out either by catalytic hydrogenation under acidic conditions followed by treatment with
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Chapter 22 Solutions
ORG CHEM W/ EBOOK & SW5 + STUDY GUIDE
- 2. 200 LOD For an unknown compound with a molecular ion of 101 m/z: a. Use the molecular ion to propose at least two molecular formulas. (show your work) b. What is the DU for each of your possible formulas? (show your work) C. Solve the structure and assign each of the following spectra. 8 6 4 2 (ppm) 150 100 50 ō (ppm) 4000 3000 2000 1500 1000 500 HAVENUMBERI-11arrow_forwardComplete the spectroscopy with structurearrow_forwardComplete the spectroscopy with structurearrow_forward
- Given the following concentrations for a system, calculate the value for the reaction quotient: Cl2(g)+ CS2(g) ⇌ CCl4(g)+ S2Cl2(g) Cl2 = 31.1 atm CS2 = 91.2 atm CCl4 = 2.12 atm S2Cl2 = 10.4 atmarrow_forwardMatch each chemical or item with the proper disposal or cleanup mwthod, Not all disposal and cleanup methods will be labeled. Metal sheets C, calcium, choroide solutions part A, damp metal pieces Part B, volumetric flask part A. a.Return to correct lables”drying out breaker. Place used items in the drawer.: Rinse with deionized water, dry as best you can, return to instructor. Return used material to the instructor.: Pour down the sink with planty of running water.: f.Pour into aqueous waste container. g.Places used items in garbage.arrow_forwardWrite the equilibrium constant expression for the following reaction: HNO2(aq) + H2O(l) ⇌ H3O+(aq) + NO2-(aq)arrow_forward
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