NMR Nuclear Magnetic Resonance Chapter 13. Proton Nuclear Spin States Two states have the same...

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NMR Nuclear Magnetic Resonance Chapter 13

description

Protons in an external magnetic field Energy difference between the spin-states depends on the strength of the magnetic field.

Transcript of NMR Nuclear Magnetic Resonance Chapter 13. Proton Nuclear Spin States Two states have the same...

Page 1: NMR Nuclear Magnetic Resonance Chapter 13. Proton Nuclear Spin States Two states have the same energy in the absence of a magnetic field Magnetic Field.

NMRNuclearMagneticResonance

Chapter 13

Page 2: NMR Nuclear Magnetic Resonance Chapter 13. Proton Nuclear Spin States Two states have the same energy in the absence of a magnetic field Magnetic Field.

Proton Nuclear Spin States

Two states have the same energy in the absence of a magnetic field

MagneticField

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Protons in an external magnetic field

Energy difference between the spin-states depends on the strength of the magnetic field.

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NMR Spectrometer

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Superconducting NMR Magnet

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NMR Sample Tubes

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NMR Probe

Sample goes in here

CoilsInsulated tube

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NMRSignal

Proton NMR Spectrum of Cl3CH

Magnetic Field

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H

Ho

Field here less than Ho

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Electrons shield nucleus from external magnetic field.

HC

Magnetic field

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E = H

Energy to change spin state proportional to field strength

E =h

Measure field strength in FREQUENCY units

Cycles/second

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Tetramethylsilane

TMSReference compound for NMR spectrum.

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NMRsignal

Magnetic Field

Cl3CH

TMS

437 Hzat 60x106 Hz

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Chemical Shift =Position of Signal - Position of TMS

Spectrometer Frequencyx106

Units = parts per million = ppm

Chemical Shift Scale

=437 Hz - 0 Hz

60x106Hzx 106 = 7.28 ppm

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Typical Chemical Shifts

CR H

CO

C H

CCl H

CBr H

CO H

0.9 - 1.8

2.1 - 2.5

3.1 - 4.1

2.7 - 4.1

3.3 - 3.7

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C H

CCH

H

CO

H

HOR

Typical Chemical Shifts

2.3 - 2.8

4.5 - 6.5

6.5 - 8.5

9 - 10

0.5 - 5

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10 9 8 7 6 5 4 3 2 1 0

TMSRHC-C-HO

C HXC = CH

H

C H

O

Proton Chemical Shifts

ppm down field from TMS

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Area proportional to number of protons

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How many lines would you expect in the proton NMR spectrum of this compound?

Br2CHCH3

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Measure signal from this proton

Field from this proton can be aligned or opposed to applied field

Magnetic Field

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Spin Combinations - 2 adjacent protons

-C-CH2-H

1 : 2 : 1

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Spin Combinations - 3 Adjacent Protons

-C-CH3

H

1: 3: 3: 1

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Adjacent Protons Lines

123

234

n + 1

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What is the name of this compound?

Ethyl Bromide

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CH3CO

OCH2CH3

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ICH2CH2CH3

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What is this compound?

CH3COCH2CH3

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C6H5COCH3

What is this compound?

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What is this compound?

C6H5COOCH2CH3

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y

x

Magneticfield changesacross sample