Table of Content
C6H5OH | + | (CH3CO)2O | → | CH3COOH | + | CH3COOC6H5 | |
phenol | Acetic oxide; Acetyl oxide; Acetic anhydride; Acetic acid anhydride; Bisacetic acid anhydride; Diacetic anhydride; Acetic acid acetyl ester; Bisacetic anhydride; Acetylacetate; 3-Oxapentane-2,4-dione | ethanoic acid | |||||
1 | 1 | 1 | 1 | Hệ số | |||
Nguyên - Phân tử khối (g/mol) | |||||||
Số mol | |||||||
Khối lượng (g) |
No information found for this chemical equation
Explanation: The ideal environmental conditions for a reaction, such as temperature, pressure, catalysts, and solvent. Catalysts are substances that speed up the pace (velocity) of a chemical reaction without being consumed or becoming part of the end product. Catalysts have no effect on equilibrium situations.
In a full sentence, you can also say C6H5OH (phenol) reacts with (CH3CO)2O (Acetic oxide; Acetyl oxide; Acetic anhydride; Acetic acid anhydride; Bisacetic acid anhydride; Diacetic anhydride; Acetic acid acetyl ester; Bisacetic anhydride; Acetylacetate; 3-Oxapentane-2,4-dione) and produce CH3COOH (ethanoic acid) and CH3COOC6H5 ()
This equation does not have any specific information about phenomenon.
In this case, you just need to observe to see if product substance CH3COOC6H5, appearing at the end of the reaction.
Or if any of the following reactant substances (CH3CO)2O (Acetic oxide; Acetyl oxide; Acetic anhydride; Acetic acid anhydride; Bisacetic acid anhydride; Diacetic anhydride; Acetic acid acetyl ester; Bisacetic anhydride; Acetylacetate; 3-Oxapentane-2,4-dione), disappearing
We no further information about this chemical reactions.
phenol
3Br2 + C6H5OH → 3HBr + (Br)3C6H2OH 2C6H5OH + 2Na → 2C6H5ONa + H2 C6H5OH + Na → C6H5ONa + 1/2H2 View all equations with C6H5OH as reactantAcetic oxide; Acetyl oxide; Acetic anhydride; Acetic acid anhydride; Bisacetic acid anhydride; Diacetic anhydride; Acetic acid acetyl ester; Bisacetic anhydride; Acetylacetate; 3-Oxapentane-2,4-dione
C2H5OH + (CH3CO)2O → CH3COOH + CH3COOC2H5 C6H5OH + (CH3CO)2O → CH3COOH + CH3COOC6H5 3n(CH3CO)2O + [C6H7O2(OH)3]n → 3nCH3COOH + [C6H7O2(OCOCH3)3]n View all equations with (CH3CO)2O as reactantAcetic oxide; Acetyl oxide; Acetic anhydride; Acetic acid anhydride; Bisacetic acid anhydride; Diacetic anhydride; Acetic acid acetyl ester; Bisacetic anhydride; Acetylacetate; 3-Oxapentane-2,4-dione
2CH3CHO + O2 → H2O + (CH3CO)2O CO + CH3COOCH3 → H2O + (CH3CO)2O 2CH3COOH → H2O + (CH3CO)2O View all equations with (CH3CO)2O as productAcetic oxide; Acetyl oxide; Acetic anhydride; Acetic acid anhydride; Bisacetic acid anhydride; Diacetic anhydride; Acetic acid acetyl ester; Bisacetic anhydride; Acetylacetate; 3-Oxapentane-2,4-dione
2CH3CHO + O2 → H2O + (CH3CO)2O CO + CH3COOCH3 → H2O + (CH3CO)2O 2CH3COOH → H2O + (CH3CO)2O View all equations with (CH3CO)2O as productInteresting Information Only Few People Knows
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