To determine yield by NMR You will be determining the yield of your reaction through the use of an internal standard. This works by calculating the relative ratio of your product (P), to a known amount of added internal standard (IS). This is a common method for assaying reactions when developing new methodologies. The ratio of compounds in a sample can be determined by using the integrals of the corresponding peaks. This ratio needs to be corrected for the number of nuclei represented by the peaks chosen in order to give the molar ratio of the compounds. YOUR TA WILL TAKE NMR FOR YOU AND PROVIDE YOU WIH NESSISARY DATA. To calculate the ratio, you will need the integrals of peaks for the product (P) and the internal standard HMDSO (IS), and the corresponding proton number (N) for the represented peaks. You will be integrating the methyl peak of the ketone (8=2.5 ppm, 3H), and the HMDSO peak (8 = 0.0 ppm, 18H). Τρ (integralp\ = (integ gralp)/(integralis) Np The equation can be simplified by substituting in the N values, which gives: (integralp)/ (integra Τρ ris 3 18 To determine the molar amount of product, the ratio is multiplied by the molar amount of internal standard that was added to the solution. (nis = 0.047 mmol). rp np = nis ; np = 0.047 mmol тр TIS TIS Use the molar amount of product to calculate yield by dividing by the theoretical molar amount of product. np * 100 % Yield = (theo.)
To determine yield by NMR You will be determining the yield of your reaction through the use of an internal standard. This works by calculating the relative ratio of your product (P), to a known amount of added internal standard (IS). This is a common method for assaying reactions when developing new methodologies. The ratio of compounds in a sample can be determined by using the integrals of the corresponding peaks. This ratio needs to be corrected for the number of nuclei represented by the peaks chosen in order to give the molar ratio of the compounds. YOUR TA WILL TAKE NMR FOR YOU AND PROVIDE YOU WIH NESSISARY DATA. To calculate the ratio, you will need the integrals of peaks for the product (P) and the internal standard HMDSO (IS), and the corresponding proton number (N) for the represented peaks. You will be integrating the methyl peak of the ketone (8=2.5 ppm, 3H), and the HMDSO peak (8 = 0.0 ppm, 18H). Τρ (integralp\ = (integ gralp)/(integralis) Np The equation can be simplified by substituting in the N values, which gives: (integralp)/ (integra Τρ ris 3 18 To determine the molar amount of product, the ratio is multiplied by the molar amount of internal standard that was added to the solution. (nis = 0.047 mmol). rp np = nis ; np = 0.047 mmol тр TIS TIS Use the molar amount of product to calculate yield by dividing by the theoretical molar amount of product. np * 100 % Yield = (theo.)
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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