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Buha Harnish Chemical Engineer
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Nitration of Methyl Benzoate
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Multistep Synthesis 50% 50% C B A Yield = 25%
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Ortho Meta Para Ortho Meta Para
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Nomenclature 6 2 3 5 4
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Nucleophilic Aliphatic Substitution
Electrophilic Aromatic Substitution
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The electrophile REPLACES H+
ARENE SUBSTITUTION E+ + H+ The electrophile REPLACES H+
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Mechanism E - Y
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E - Y Mechanism + H+
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Charge o and p
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Reaction Coordinate
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Nitration of Benzene Nitrobenzene
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Nitration Reagent HONO H2SO4 NO H3O HSO4- Nitronium Ion
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Multiple Substituents
G Second Group. Where go? How fast?
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Nitration of Toluene HNO3 63% 3% 34%
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ORTHO + + + META + + + PARA + + +
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Electron donating groups favor reaction ORTHO and PARA.
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Nitration of (trifluoromethyl)benzene
HNO3 H2SO4 6% 91% 3%
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Electron Withdrawing group
+ charge here bad
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Ortho + + + Meta + + + Para + + +
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Electron Withdrawing Groups are Meta Directors and DEACTIVATING
Meta Product
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Ortho-Para Directors Very Activating -NH2 -NHR -OH -OR O -NHCR O -OCR
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Deactivating -Halogens Ortho-Para Directors Activating -R Activating
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Meta Directors O -SO3H -CR O -NO2 -COH -CN
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Main Reaction meta Side Products
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Procedure 1. Dissolve methyl benzoate in H2SO4 2. Mix HNO3 and
H2SO4 at 0oC 3. Add HNO3 / H2SO4 dropwise to methyl benzoate at 0oC
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Procedure 4. Let stand at room temperature 10 minutes 5. Pour onto ice
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Filter
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Wash Recrystallize from methanol Dry Weigh m.p.
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