infrared spectroscopy. infrared absorbance ir- empirical comparisons identifying functional groups...

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Infrared Spectroscopy

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Page 1: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Infrared Spectroscopy

Page 2: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Infrared Absorbance

Page 3: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

IR- Empirical Comparisons

Identifying functional groups in organic molecules

Page 4: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Region of infrared that is most useful lies between2.5-16 mm (4000-625 cm-1)

depends on transitions between vibrational energy states

Stretching: higher energy / higher wave number (cm-

1)

Bending: lower energy / lower wave number (cm-1)

Infrared Spectroscopy

Page 5: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

A bond must have a dipole or an induced dipole in order to have an absorbance in the IR spectrum.

When the bond stretches, the increasing distance between the atoms increases the dipole moment.Therefore, the greater the dipole, the more intense the absorption. (i.e., The greater the molar extinction coefficient () in Beer’s law, A = bc.

Page 6: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

The energy (IR frequency/ wave number) and the intensity of the absorption band also depends on the concentration of solution from Beer’s law, A = bc.

It is easier to stretch an O–H bond if it is hydrogen bonded

Page 7: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

The presence & absence of absorption bands must be considered in identifying a possible structure in IR spectroscopy. Empiricism is critical to successful identification.

NOTE: Bonds which lack dipole moments are notdetected.

Analyzing Structure:Functions & Infrared Spectra

The molecular formula is a critical piece of information, which limits the functional possibilities.

Page 8: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Structural/Functional Components

Page 9: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules
Page 10: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

The peaks are quantized absorption bands corresponding to molecular stretching and

bending vibrations

An Infrared Spectrum

Page 11: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

The fingerprint region

The functional groupstretching region

Page 12: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Structural unit Frequency, cm-1

Stretching vibrations (single bonds)

O—H (alcohols) 3200-3600

O—H (carboxylic acids) 3000-3100

N—H3350-3500

Infrared Absorption Frequencies

First examine the absorption bands in the vicinity of 4000-3000 cm–1

Page 13: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules
Page 14: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

IR Spectrum of a Primary Amine(1o)

The N–H bending vibration occurs at ~1600 cm–1

Page 15: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Structural unit Frequency, cm-1

Stretching vibrations (single bonds)

sp C—H 3310-3320

sp2 C—H 3000-3100

sp3 C—H 2850-2950

sp2 C—O 1200

sp3 C—O 1025-1200

Infrared Absorption Frequencies

Page 16: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Structural unit Frequency, cm-1

Stretching vibrations (single bonds)

sp C—H 3310-3320

sp2 C—H 3000-3100

sp3 C—H 2850-2950

sp2 C—O 1200

sp3 C—O 1025-1200

Infrared Absorption Frequencies

Page 17: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Structural unit Frequency, cm-1

Stretching vibrations (multiple bonds)

Infrared Absorption Frequencies

C C 1620-1680

—C N

—C C— 2100-2200

2240-2280

Page 18: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Some hydrocarbon absorption bands

Page 19: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Structural Components & Functional Differences:

Therefore the amide has a longer (weaker) C=O bond (1680-1700 cm-1) and the ester (1730-1750 cm-1) is shorter (stronger).

The nitrogen of an amide is less electronegative than the oxygen of an ester.

Page 20: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Structural unit Frequency, cm-1

Stretching vibrations (carbonyl groups)

Aldehydes and ketones 1710-1750

Carboxylic acids 1700-1725

Acid anhydrides 1800-1850 and 1740-1790

Esters 1730-1750

Amides 1680-1700

Infrared Absorption Frequencies

C O

Page 21: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Cyclic aliphatic ketone

Page 22: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Mono substituted aromatic methyl ketone

Page 23: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Mono substituted aromatic ketone

Page 24: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Aliphatic ester I

Page 25: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Aliphatic ester II

Page 26: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Aliphatic ester III

Page 27: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Mono substituted aromatic ester

Page 28: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Mono substituted aromatic conjugated ester

Page 29: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Structural unit Frequency, cm-1

Stretching vibrations (single bonds)

sp2 C—O 1200

sp3 C—O 1025-1200

Infrared Absorption Frequencies

Page 30: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Dihexyl Ether

~1100 cm-1

1025-1200 cm-1

Page 31: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

~1200 cm-1

Page 32: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Structural unit Frequency, cm-1

Bending vibrations of alkenes

Infrared Absorption Frequencies

CH2RCH

CH2R2C

CHR'cis-RCH

CHR'trans-RCH

CHR'R2C

910-990

890

665-730

960-980

790-840

Page 33: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

wavenumber (cm–1) assignment

30752950

1650 and 890

???

Page 34: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

cis- 665-730

trans- 960-980

Page 35: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Summary: C–H bond absorption and hybridizationof the carbon atom

Page 36: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Distinctive Stretch of C–H Bond in an Aldehyde (the “waggle” vibration)

Page 37: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Aliphatic aldehyde

Page 38: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Mono-substituted aromatic aldehyde

Page 39: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Mono-substituted aromatic conjugated aldehyde

Page 40: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Mono substituted aromatic ester

Page 41: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Para di-substituted aromatic ether & aldehyde

Page 42: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Infrared Spectroscopy

Common Functional Groups

Handout

http://chemconnections.org/general/chem121/Spectroscopy/IR-handout-11.htm

Page 43: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Structural unit Frequency, cm-1

Bending vibrations of derivatives of benzene

Monosubstituted 730-770 and 690-710

Ortho-disubstituted 735-770

Meta-disubstituted 750-810 and 680-730

Para-disubstituted 790-840

Aromatic Absorption Frequencies

Page 44: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules
Page 45: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

20003500 3000 2500 10001500 500

Wave number, cm-1

Infrared Spectrum of tert-butylbenzene

H—C

Ar—H

Monsubstitutedbenzene

C6H5C(CH3)3

Page 47: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Infrared Spectroscopy

Common Functional Groups

QUIZ

Page 48: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Question

Is the following IR of cis or trans 2-pentene?

A) cis B) trans

Page 49: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

A) benzyl alcoholB) 1,4,6-heptatrien-3-one

C) 2,4,6-heptatrienaldehydeD) benzaldehyde

C7H6O

Question

Identify the compound from the IR above.

Page 50: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Question

C10H12O

Identify the compound from the IR above.

A) 4-phenylbutanaldehydeB) phenylpropyl ketone

C) meta-isopropylbenzaldehydeD) 1-phenyl-2-butanone

Page 51: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Question

C3H4O

A) cyclopropanoneB) propynol

C) 2-cyclopropenolD) 1,2-propadienol

Identify the compound from the IR above.

Page 52: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Question

C3H7NO

Identify the compound from the IR above.

A) N-methylacetamideB) N,N-dimethylformamide

C) 3-aminopropanalD) N-methylamino-ethanal

Page 53: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Match the ortho, meta and para isomers of xylene.

I

III

II

ortho meta para

A) I II III

B) II I III

C) I III II

D) III II I

Question

Page 54: Infrared Spectroscopy. Infrared Absorbance IR- Empirical Comparisons Identifying functional groups in organic molecules

Question

A) methylbenzoateB) phenylacetateC) p-anisaldehydeD) o-anisaldehyde

Identify the compound from the IR above.

C8H8O2