Stereochemistry Ok (1)

65
Kloramfenikol 2,2-dichloro-N-((1R,2R)-1,3-dihydroxy-1-(4- nitrophenyl)propan-2-yl)acetamide

description

s

Transcript of Stereochemistry Ok (1)

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Kloramfenikol

2,2-dichloro-N-((1R,2R)-1,3-dihydroxy-1-(4-nitrophenyl)propan-2-yl)acetamide

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Cis/trans 1,2 dikarboksilat etena• Cis/Trans 1,2 dikloro etena

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How Sweet it is!

Sucrose

O

HOOH

O

CH2OH

OCH2OH

CH2OH

HO

HO

OH

Sucralose or Splenda

O

Cl

HOOH

O

CH2OH

OCH2Cl

CH2Cl

HO

HO

Sucralose is 600 times sweeter and does not get metabolized.

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Stereochemistry

Stereochemistry refers to the 3-dimensional properties and

reactions of molecules. It has its own language and terms that need to be learned in order to fully communicate and understand the concepts.

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Structural/Constitusional Isomers1. a)

Butane (C4H10) 2-methylpropane (C4H10)

2.

CH2 C CH3

CH3

CH2 CH CH2 CH3 CH3 CH CH CH3

CH2

CH2

CH2

CH2

CHCH2

CH2

CH3

1-butene 2-butene

2-methylpropene cyclobutane methylcyclopropane

CH3 CH2 CH2 CH3 CH3 CH CH3

CH3

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Definitions

• Stereoisomers – compounds with the same connectivity, different arrangement in space

• Enantiomers – stereoisomers that are non-superimposible mirror images; only properties

that differ are direction (+ or -) of optical rotation

• Diastereomers – stereoisomers that are not mirror images; different compounds with different physical properties

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More Definitions

• Asymmetric center – sp3 carbon with 4 different groups attached

• Optical activity – the ability to rotate the plane of plane –polarized light

• Chiral compound – a compound that is optically active (achiral compound will not

rotate light)• Polarimeter – device that measures the

optical rotation of the chiral compound

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Lingkup Stereoisomer

• Isomer Konformasi : single bond rotated

• Isomer Konfigurasi – Isomer Geometri : cis/trans ; E/Z– Isomer Optik :

• Enantiomer : +/- ; d/l ; R/S,

• Disstereomer

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Isomer Konformasi (konformer)

Konformasi : perubahan bentuk molekul dalam ruang oleh karena adanya putaran (rotasi) pada ikatan tunggal (single bond)

Konformasi senyawa terjadi pada :

a. Senyawa rantai terbuka (alifatis)

b.Senyawa rantai tertutup (siklis)

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Konformasi Senyawa Alifatis

Etana : CH3-----CH3

Konformer Eklips/Gerhana Konformer Goyang/Gauche

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Eklips/Gerhana-Atom Hidrogen (atau gugus) saling menutup

- Energi tinggi karena

banyak terjadi

tolakan antar atom

Goyang/Gauche-Atom Hidrogen (atau gugus) tidak saling menutup

- Energi rendah karena

sedikit terjadi tolakan

antar atom

InterchangeableKonformer GoyangKonformer Eklips

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Konformer senyawa Butana

• Konformer Goyang/Gauche

• Konformer Eklips/Gerhana

• Konformer Anti

• Konformer metil tereklipskan

(lihat : model molekul hyperchem)

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Konformer pada senyawa siklik : Sikloheksana

• Konformer Kursi

• Konformer Setengah Kursi

• Konformer Biduk Belit

• Konformer Perahu / Biduk

(lihat : model molekul hyperchem)

Konformer Kursi Konformer Biduk Konformer Biduk Belit

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Isomer geometriTerjadi pada :– Senyawa dg ikatan rangkap : alkena– Senyawa siklik

Terbentuk karena ikatan rangkap rigid/kaku

Tidak dapat ber-rotasi

Tidak dapat diubah satu sama lain

Ada 2 posisi relatif :

Bersisian = cis ; Berseberangan = trans

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Contoh

Cis 1,2 dikloroetena Trans 1,2 dikloroetena

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How about this ?

I

Br

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Aturan Chan Inglod Prelog• Urutan deret ditentukan berdasar nomor atom

(no atom tinggi lebih berprioritas)

• Isotop dengan no massa tinggi berprioritas

• Jika atom sama/identik, no atom dari atom berikutnya digunakan sebagai dasar prioritas

• Atom-atom dengan ikatan rangkap atau ganda tiga diberi kesetaraan dengan ikatan tunggal

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Isomer Geometri pada senyawa siklis

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Isomer Optik

• Gliseraldehid

(α) = - 8,7 ° (α) = 8,7

H

CH2OH

HO

CHO

OH

CH2OH

H

CHO

(-) Gliseraldehid (+) Gliseraldehid

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Plane-Polarized Light

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Plane-Polarized Light through an Achiral Compound

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Plane-Polarized Light through a Chiral Compound

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Polarimeter Measures Optical Rotation

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Specific Rotation, [α]

[α] = α / cl = observed rotation

c = concentration in g/mLl = length of tube in dm

Dextrorotary designated as d or (+), clockwise rotation

Levorotary designated as l or (-), counter-clockwise rotation

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Kiralitas

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Chirality CenterCarbon has four different groups attached

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Enantiomers nonsuperimposible mirror images

OH

CH3HO2CH

OH

CO2HCH3

H

mirrorplane

(S)(+) lactic acid (R)(-) lactic acid

from muscle tissue from milk[] = +13.5 [] = -13.5

oo

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Biological Activity

(R)(+) Thalidomide (S)(-) Thalidomide

N

NO

O

O

O

H

H

a sedative and hypnotic a teratogen

N

NO

O

O

O

H

H

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-(p-isobutylphenyl)propionic acid

CH3 CO2HH

(S)(+) ibuprofen (R)(-) ibuprofen

CH3HO2C

H

anti-inflammatory 80-90% metabolized to (S)(+)

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SSRI Efficacy depends on Stereochemistry

ON(CH3)2

F

NC

*

(+/-) Celexa(-) Lexapro

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Absolute Configuration

1

23

4

Use Cahn, Ingold, Prelog priorities

Place the lowest priority group back (focus down C - 4 bond)

(R)

clockwise

draw arrow from 1-2-31

2 34

(S)

counterclockwise

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Assign Priority to each Group on Asymmetric Center

focus down C-4 bond

4

3

2

1I

ClHF

rotateI

FH

Cl

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Lactic Acid

(S) (R)

4

3 2

1

4

32

1OH

CH3 CO2HH

OH

CH3HO2CH

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C.I.P. Priorities

CH2CH2CH3 CH(CH3)2

CH2CH2OH CH2CH

O

CH2CH2CH3 CH=CH2

CO2H CH 2Cl

Low High

CH2CH2Br CH(CH3)2

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DiastereomersStereoisomers That Are Not Mirror Images

3 322

opposite stereochemistry at C3

same stereochemistry at C2 (S)

CO2H

OHH

Br H

CO2H

OHH

BrH(2S,3S) (2S,3R)

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Fischer Projections with 2 Chiral Centers

CO2H

CH3

H OH

Br H H Br

H OH

CO2H

CH3

(2S,3S) (2S,3R)

2

3

2

3

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2 Chiral Centers4 Stereoisomers

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Tartaric Acids

CO2H

CO2H

H OH

HO H H OH

HO H

CO2H

CO2H

CO2H

CO2H

H OH

H OH HO H

HO H

CO2H

CO2H

R,R S,S

R,S S,R

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Racemic Mixture

o

(g/mL) 1.7598 1.7598 1.7723

m.p. C 168-170 168-170 210-212

[] (degrees) - 12 + 12 0

(R,R) Tartaric acid (S,S) Tartaric Acid (+/-) Tartaric acid

Racemic Mixture (Racemate): 50/50 mixture of enantiomers

CO2H

CO2H

H OH

HO H H OH

HO H

CO2H

CO2H

R,R S,S

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Meso CompoundInternal Plane of Symmetry

Optically Inactive

orotate 180

superimposible

CO2H

CO2H

H OH

H OH HO H

HO H

CO2H

CO2H

R,S S,R

mirror plane

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2,3,4-trichlorohexaneHow many stereoisomers?

Cl

Cl

Cl3 asymmetric centers

8 stereoisomers

* **

2n, n= # asymmetric centers (3)

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n = 3; 2n = 8

CH3

CH2CH3

H Cl

Cl H

H Cl Cl H

H Cl

Cl H

CH3

CH2CH3

CH3

CH2CH3

Cl H

H Cl

H Cl Cl H

Cl H

H Cl

CH3

CH2CH3

H Cl

H Cl

H Cl

CH3

CH2CH3

Cl H

Cl H

Cl H

CH3

CH2CH3

Cl H

H Cl

H Cl

CH3

CH2CH3

H Cl

Cl H

Cl H

CH3

CH2CH3

S

S

R

R

R

S

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A CarbohydrateCHO

CH2OH

H OH

HO H

H OH

H OH

(+) D-Glucose

R

S

R

R

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Internal Planes of Symmetry

CH3CH3

CH3CH3

CH3CH3

CH3 CH3

Both are Meso

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Identical, Enantiomers or Diastereomers?

H

H

CH3

CH3

&

CH3

CH3

H

H CC

a)

CH2CH3

CH3

H

H

Br

Br

CH2CH3

CH3&

b)

OH

HO

NH2

NH2

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Reactions that Generate Chirality Centers

Hydrogenation, syn

CH3CH3

CH2CH3CH2CH3

H2, Pt/C

CH2CH3 CH2CH3

CH3CH3

HH

CH2CH3

CH2CH3

H CH3

H CH3

product is meso

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BrominationTrans is formed exclusively

No Meso is formed (cis)

racemic mixture

S SR RBr BrBr Br

Br2

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Bromonium Ion is Opened Equally from Both Sides

Br2

Br Br Br BrR R S S

racemic mixture

Br

Br

Br

Br

Br Br + -

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trans alkene + anti addition = MESO

CH2CH3

CH2CH3 H

H

Br2

CH2CH3

CH2CH3

HH

Br

Br

Br Br

CH2CH3CH2CH3HH

meso

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cis Alkene + anti addition = racemic mixture

H

CH2CH3 CH2CH3

H

Br2

Br Br

CH2CH3CH2CH3 H

HR R

CH2CH3

CH2CH3

H

H

Br

Br

CH2CH3CH2CH3 H

H

Br BrS S

Br

H HCH2CH3CH2CH3

Br

Br

BrH

H

CH2CH3

CH2CH3

a b

a b

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Brominations Often Generate Asymmetric Centers

Br2

R RS S

racemic mixture

CH3CH3

H H

CH3CH3

Br BrH H

CH3CH3

Br BrH H

CH3

CH3 H

H CH3

CH3 H

H

Br

Br

CH3CH3

Br BrH H

S Rmeso

Br2

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Asymmetric Center is Generated Racemic Mixture Formed

H-Br

HH

Br

Br

a)

b)

Br

H

a) Br

H

b)(R) (S)

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Asymmetric Induction

PPh2

PPh2

RuCl2

CH3

OHH2

Ru(BINAP)Cl2

CH3H

OH

96% e.e.

Noyori and Knowles shared Nobel Prize in Chemistry, 2001

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Preparation of (L)-Dopafor Treatment of Parkinson’s

HO

HO

CH2C

CO2H

NH2

H

l-(-) Dopa

HO

HO

CH2CH2NH2

Dopaminecannot cross blood-brain

barrier

C=CNH2

CO2HH

HO

HO

H2Rh(DIOP)Cl2

enz.

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Relevance of Stereochemistry

(S,S)(R,S)useful decongenstants

d-pseudoephedrine and l-ephedrine

4 stereoisomers

**

2 asymmetric centers

EPHEDRA from Ma Huong

NHCH3

CH3

OH

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One-step synthesis

Pseudophed

*

d-(S)- "Meth"l-(R) - Vicks

(methamphetamine)"desoxyephedrine"NHCH3

CH3

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Model of Thalidomide

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Sildenafil (Viagra) and Caffeine

NN

N

N

CH3

H

O

CH3CH2O

S

N

N

CH3

O

O

N

N

N

N

CH3

O

O

CH3

CH3

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Radiosensitizer of Choice Until 2004

Okadaic acid17 asymmetric centers

O

OH

HOOC

OH

OH

O

OH

HO

OH

HOH

O

O