The reaction of phenol with phosgene to produce diphenyl carbonate is shown below. 2 OH phenol Chemical Formula: C6H₂O Molecular Weight: 94.11 + CI phosgene Chemical Formula: CCl₂O Molecular Weight: 98.91 CI diphenyl carbonate Chemical Formula: C13H1003 Molecular Weight: 214.22 Determine the number of grams of diphenyl carbonate that can be produced from 15.23 grams of phenol and an excess of phosgene.
The reaction of phenol with phosgene to produce diphenyl carbonate is shown below. 2 OH phenol Chemical Formula: C6H₂O Molecular Weight: 94.11 + CI phosgene Chemical Formula: CCl₂O Molecular Weight: 98.91 CI diphenyl carbonate Chemical Formula: C13H1003 Molecular Weight: 214.22 Determine the number of grams of diphenyl carbonate that can be produced from 15.23 grams of phenol and an excess of phosgene.
Organic Chemistry
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Chapter25: Carbohydrates
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![The reaction of phenol with phosgene to produce diphenyl carbonate is shown below.
2
OH
phenol
Chemical Formula: CHO
Molecular Weight: 94.11
+
CI CI
phosgene
Chemical Formula: CCI₂O
Molecular Weight: 98.91
aso
diphenyl carbonate
Chemical Formula: C13H1003
Molecular Weight: 214.22
Determine the number of grams of diphenyl carbonate that can be produced from 15.23 grams of phenol and an
excess of phosgene.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F883e3e80-624e-4e0d-88a1-3570ac65b326%2Fbc4dd4d4-cd3d-41c2-a002-fe861af49d17%2F5l1sapn_processed.png&w=3840&q=75)
Transcribed Image Text:The reaction of phenol with phosgene to produce diphenyl carbonate is shown below.
2
OH
phenol
Chemical Formula: CHO
Molecular Weight: 94.11
+
CI CI
phosgene
Chemical Formula: CCI₂O
Molecular Weight: 98.91
aso
diphenyl carbonate
Chemical Formula: C13H1003
Molecular Weight: 214.22
Determine the number of grams of diphenyl carbonate that can be produced from 15.23 grams of phenol and an
excess of phosgene.
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