Preview

Caproic Acid Synthesis

Powerful Essays
Open Document
Open Document
1644 Words
Grammar
Grammar
Plagiarism
Plagiarism
Writing
Writing
Score
Score
Caproic Acid Synthesis
Introduction In this lab, caproic acid was synthesized in a multi-step process that involved the synthesis of three intermediates – diethyl n-butylmalonate, potassium n-butylmalonate, and n-butyl malonic acid respectively. An IR was used to characterize the starting material, n-bromobutane, and the first intermediate, diethyl n-butylmalonate; while IR and NMR were used to characterize the final product, caproic acid.
Reactions, Mechanism and Theory
Caproic acid a.k.a n-hexanoic acid is a carboxylic acid derived from hexane which has the general formula C5H11COOH. It is a colorless oily liquid with a really pungent odor associated with goats. Caproic acid was synthesized in a multi-step process which produced three intermediates - diethyl n-butylmalonate, potassium n-butylmalonate, and n-butyl maonic acid. The synthesis of caproic acid involved alkylation, saponification, and decarboxylation reactions.
The first intermediate, diethyl n-butylmalonate – a diethyl ester of malonic acid – was synthesized via an alkylation reaction. Alkylation reactions involve the formation and alkylation of an enolate. In this lab, NaOEt, a strong base was used to pull off one of the most acidic α-hydrogens of the carbonyl ester – diethylmalonate – to form an enolate. In order to alkylate the alpha position which now has a negative charge, the enolate was used to attack an alkyl halide, 1-bromobutane via Sn2 mechanism. The mechanism for the above reaction is shown below:

The second intermediate, potassium n-butylmalonate, was synthesized by saponification of the first intermediate, diethyl n-butylmalonate, with potassium hydroxide. The hydrolysis of diethyl n-butylmalonate resulted in the formation of potassium n-butyl malonic acid by losing the ethoxy group (-OCH2CH3) from both sides of the carbonyl ester. Further deprotonation of the formed acid by -OCH2CH3 forms a carboxylate, potassium n-butylmalonate. The mechanism for the above process is shown below:

N-butyl



References: Reagent table http://www.chemblink.com/products/133-08-4.htm

You May Also Find These Documents Helpful

  • Satisfactory Essays

    CHM 237 Lab 10 Report

    • 757 Words
    • 3 Pages

    4-methylcyclohexanol was synthesized to 4-methylcyclohexene using dehydration. 4-methylcyclohexanol was heated to reflux and the subsequent distillate (4-methylcyclohexe) was collected. It was then purified using sodium chloride to separate products and an anhydrous solid was then added and filtered. The resulting product had a mass of 0.399 g and a percent yield of 41%. The product was positively identified and characterized as 4-methylcyclohexene via IR and Br2 test.…

    • 757 Words
    • 3 Pages
    Satisfactory Essays
  • Powerful Essays

    The regiochemistry of the product was para. The substituent presented on the benzene ring had nitrogen right next to the carbon of the benzene. The lone pair of nitrogen could delocalize over the benzene ring and activate it. An activating group was ortho or para directing because the carbocation formed by this arrangement gave the most stabilized resonance structures. The majority was the para product because there was steric hindrance in the ortho position as the substituent was a large…

    • 1196 Words
    • 5 Pages
    Powerful Essays
  • Powerful Essays

    Chem 3650

    • 1178 Words
    • 5 Pages

    Marilyn Wooten PhD. marilyn.wooten@gmail.com 01T 7:30–11:20 am T/R Ray Still M.S. Raymond.still@gmail.com 02T 6:30 10:20 pm T/R *If you miss a lab you must email me and your lab instructor ASAP. You will have one week to make up the lab and it must be made up in one of the sections listed above. Prerequisites: Completion of or concurrent enrollment in CHE 3643. Course Outline: Simple and multistep synthesis of organic compounds. Text: There is NO text for this lab. Experimental procedures can be found on Blackboard Learn. https://learn.utsa.edu/ Lab notebooks: Instructor's discretion Grades:  60% lab reports  20% Midterm exam  20% Final exam o Exams will be over lab and lecture material. You may use your lab reports during the midterm and final Format of prelab: 1. Title of experiment 2. Abstract  A short description of the experiment 3. Include reactions (with mechanism) if applicable. 4. Structures of reactants and products. (only organic compounds)  http://www.sigmaaldrich.com  Wikipedia also has information on chemical compounds but it is community maintained, so double check the information. 5. Table of physical constants for all chemicals (this includes products)  Amount to be used, melting point, boiling point, MW, and density. o http://www.sigmaaldrich.com 6. Hazards of all chemical used in lab. (must be complete or you will be sent out)…

    • 1178 Words
    • 5 Pages
    Powerful Essays
  • Satisfactory Essays

    Chem 211

    • 368 Words
    • 2 Pages

     This course is a Moodle course. Lectures, Syllabus, and other related material will be regularly posted on Moodle.  Exams will be conducted on MOODLE.  Text: Carey, F. A.; Giuliano, R. M. In Organic Chemistry, 8th Ed., 2011.…

    • 368 Words
    • 2 Pages
    Satisfactory Essays
  • Good Essays

    Abstract: The objective of this experiment is to successfully perform a dehydration of a 2-butanol and a dehydrohalogenation of 2-bromobutane to form the products 1-butene, trans-2-butene, and cis-2-butene. It was found that a dehydration of 2-butanol yielded 4.6% 1-butene, 67.3% trans-2-butene, and 28.1% cis-2-butene, and a dehydrohalogenation of 2-bromobutane yielded 19.1% 1-butene, 69.9% trans-2-butene, and 11.0% cis-2-butene.…

    • 836 Words
    • 6 Pages
    Good Essays
  • Satisfactory Essays

    Chem Lab

    • 757 Words
    • 4 Pages

    The purpose of this experiment was to prepare an alkyl halide, 2-chloro-2-methylbutane by reacting 2-methyl -2-butanol (t-amyl alcohol) with hydrochloric acid. Alkyl halides are of wide interest because they are widespread and have diverse beneficial and detrimental impacts .The overall reaction is given below:…

    • 757 Words
    • 4 Pages
    Satisfactory Essays
  • Good Essays

    The Aldehyde Enigma

    • 817 Words
    • 4 Pages

    In the Cannizaro reaction an aldehyde is simultaneously reduced into its primary alcohol form and also oxidized into it 's carboxylic acid form. The purpose of this experiment is to isolate, purify and identify compounds 1 and 2 which contain 4-chlorobenzaldehyde, methanol, and aqueous potassium hydroxide. Compounds 1 and 2 are purified by crystallization. . The purified product will be characterized by IR spectroscopy and melting point.…

    • 817 Words
    • 4 Pages
    Good Essays
  • Better Essays

    Isopentyl Acetate

    • 1362 Words
    • 6 Pages

    The purpose of this experiment is to synthesize isopentyl acetate (3-methylbutly acetate) via Fischer Esterification.…

    • 1362 Words
    • 6 Pages
    Better Essays
  • Powerful Essays

    Abstract:The Wittig Reaction is a nucleophilic addition in which an alkene is formed as a product. Both the E and Z isomers of the alkene result. Substituents on the aromatic aldehyde affect the E/Z ratio of products that form. In this experiment, a nitro group was used as the substituent in the ortho, meta and para positions, with benzaldehyde as the control. Each of the four aldehydes reacted with (carbethoxymethylene) triphenylphosphorane to produce ethyl cinnamate, ethyl-3-(2-nitrophenyl)acrylate, ethyl-3-(3-nitrophenyl)acrylate, and ethyl-3-(4-nitrophenyl)acrylate. The prediction was the closer the substituent was to the aldehyde, the greater the ratio of E/Z isomers; benzaldehyde was predicted to result in the most similar ratio of E/Z isomers. The ratios of E/Z isomers were determined by using the NMR spectra obtained. A percent conversion was also obtained. Ethyl-3-(2-nitrophenyl)acrylate had a ratio of 9.03:1, ethyl-3-(3-nitrophenyl)acrylate had a ratio of 5.2:1, ethyl-3-(4-nitrophenyl)acrylate had a ratio of 1:1 and ethyl cinnamate had a ratio of 9.3:1. The results for the compounds except ethyl cinnamate supported the hypothesis that the ratio would be closer to 1:1 as the substituent moved further from the carbonyl.…

    • 4968 Words
    • 14 Pages
    Powerful Essays
  • Powerful Essays

    By Using specific methods of compounds detection, we can match an unknown compound with a known compound because similar compounds will display similar characteristics. In this experiment, identifications of the unknown ketone was accomplished using thin layer chromatography, melting point, and NMR spectrometry. Thin layer chromatography is very quick but sensitive way of determining the components of a mixture or a specific compound from a list of knowns. This method is the one which was utilized in the following experiment. When comparing a sample of known compounds with an unknown’s Rf values and appearance on the thin layer chromatograph these characteristics can be used to easily determine which known the unknown is. The Rf values are important in determining the more polar molecules from each other, while the color and appearance can be used to separate compounds with similar polarities. The color added by the reaction with 2,4-dinitrophneylhydrazine eliminates the need to compare colors of the different knowns with the unknown. The other method used to help determine which ketone the unknown was, was nuclear magnetic resonance spectrometry or NMR. NMR utilizes radio frequency waves to determine the number of carbons present and what they are connected to. With this information and the type of hydrogen present from the NMR, an accurate estimate of the unknown ketone can be made.…

    • 1164 Words
    • 5 Pages
    Powerful Essays
  • Powerful Essays

    Abstract A technique for the Diels-Alder synthesis of endo-norbornene-cis-5,6dicarboxylic anhydride and its stereoisomer, exo-norbornene-cis-5,6-dicarboxylic anhydride, is explained. To prove that each stereoisomer was made in the experiment and to distinguish between the two molecules, the characteristic long range coupling affects seen in the H1-NMR spectra of bridged six member ring molecules are used. A method for the separation of the two molecules is also explained. This technique can be used as a tool to instruct organic chemistry students in the Diels-Alder reaction and how to use NMR techniques to prove the stereochemistry of the products involved in such reactions. Introduction The Diels-Alder reaction has long been an important tool for the organic chemist in that it not only creates new carbon-carbon bonds, but it also creates six-membered rings1. This attribute of the Diels-Alder reaction is especially valuable, because there are few synthetic methods of creating six-membered ring structures. The process of a DielsAlder reaction involves a substituted alkene reacting with a conjugated diene in the cis conformation to create two new carbon-carbon σ bonds which results in the formation of a six-membered ring, as shown below: Figure 1: Example Diels-Alder reaction…

    • 2591 Words
    • 11 Pages
    Powerful Essays
  • Good Essays

    The goals in this lab were to have a reaction occur with 4-methylcyclohexanol and an acid catalyst to form our product of 4-methylcyclohexene via an E1 reaction. This reaction is accomplished by removing the –OH group on 4-methylcyclohexanol via dehydration and to have a double bond form via a loss of a hydrogen on a β-Carbon.…

    • 1098 Words
    • 5 Pages
    Good Essays
  • Best Essays

    chemistry

    • 3236 Words
    • 13 Pages

    (11) Zerong Daniel Wang, Yirong Mo 2, Chiao-Lun Chiou and Minghong Liu; A Simple Preparation of 2,3,4,6-Tetra-O-acyl-Gluco-, Galacto- and Mannopyranoses and Relevant Theoretical Study. Molecules, 2010, 15, 374-384…

    • 3236 Words
    • 13 Pages
    Best Essays
  • Good Essays

    Biology

    • 1833 Words
    • 8 Pages

    The formation reactions of carbon-carbon bonds are important in organic synthesis [1-5]. In general, acylation reaction is one of the important carbon-carbon forming reactions. It belongs to the reactions of the enolate derived from a carbonyl group with an electrophilic carbon such as Aldol, Claisen, Michael reaction and alkylation of metal enolates [6-9].The acylation reaction as well as above other reactions of enolates has serious limitations to be overcome. In these reactions, a strong base NaOH is needed to transform the carbonyl compounds into their anion forms. Generally, the carbonyl compounds such as ketone and aldehyde have high pKa values (pKa ~ 20) [1]. It is difficult to make their − anion forms of carbonyl compounds by removing the hydrogens on the α-carbons because of their weakly acidic characteristics. Therefore, the product yields of acylation, alkylation, and an aldol condensation are low and unwanted side reactions occur (Figure 1). In order to avoid side reactions, a good nucleophile needs to be produced…

    • 1833 Words
    • 8 Pages
    Good Essays
  • Good Essays

    The aim of this experiment was to perform a multistep synthesis to form tetraphenylcyclopentadienone. The first step of the reactions was to synthesize benzoin from the condensation of benzaldehyde. A yield of 28.91% benzoin was obtained. The MP of benzoin was 127O-130O C and the IR spectra displayed a carbonyl peak at 3415 cm-1 ,,which represents and OH functional group. The second step of the reaction was to oxidize benzoin to form benzil; this reaction yielded 27.04% benzil. The MP of the benzil was 91O-93O C and the IR spectra revealed no OH functional groups. The last step of the synthesis was a double aldol condensation reaction to form tetraphenylcyclopentadienone; this reaction had a yield of 76.56% and a melting point of 222O-225O C. The IR spectra revealed a ketone carbonyl peak at 1700 cm-1.…

    • 1664 Words
    • 7 Pages
    Good Essays