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  NUCLEOPHILIC SUBSTITUTION REACTIONS (SN 1 and SN 2)   Awaiting Review for Nickels
Tagged with:                [Post New]posted on 14 Dec 2007 14:01:30 IST    

 


NUCLEOPHILIC SUBSTITUTION REACTIONS:
 
. All the nucleophilic substitution reactions begins with a  Heterolytic cleavage of
 
       the bond between the sp 3 carbon and the leaving group.
 
. This bond cleavage makes the sp3 carbon electron-deficient.
 
. With the leaving group and a pair of electrons gone, the substrate is now a  positively charged carbocation .
 
. The nucleophile then reacts with this carbocation in a heterogenic bond forming the product.
 
 
Most of the Aliphatic nucleophilic substitution reactions follow one of two mechanisms , SN1  , SN2
 
The basic difference between the two mechanisms is
 
. When the leaving group departs
 
. Rate-determining step of the reaction ( i.e., whether the rate of the reaction is dependent on the substrate or the nucleophile)
 
. Whether any intermediate is formed.
 
 
 
Type of reaction
SN 1, or a Substitution, Nucleophilic, unimolecular (1) reaction
SN 2, or a Substitution, Nucleophilic, bimolecular ( 2) reaction
When the leaving group departs
 
The leaving group departs before the nucleophile arrives.
The leaving group departs while the nuclepohile is reacting
i.e., the rate at which the nucleophile attacks the carbon is equal to the rate at which the leaving group departs.
Whether any intermediate is formed.
 
A carbocation intermediate is formed first.
The bond between the carbon and the leaving group breaks, and the bond between the carbon and the nucleophile forms simultaneously,
Rate-determining step of the reaction
The rate of the reaction depended only on the concentration of the substrate.
i.e, it is a first order reaction(hence the name unimolecular reaction)
 
The rate for a second order reaction depends on the concentrations of two The rate of this reaction depends on the concentration of both reagents in the reaction mixture.
changes in the concentrations of both reactants affect the rate of reaction.
Thus it is a
second order reaction.
(hence the name bimolecular reaction)
 
 
SN1 reaction

The SN1 reaction

 
 
 
 
The SN1 reaction is a two-step reaction in which
 
1.The leaving group leaves, forming a carbocation. This is the slow step, and so the rate is dependent only on the concentration of the substrate.
 
2.The nucleophile attacks the carbocation. It can do this from either side, typically in a 50/50 ratio.
 
3.Therefore about half the product has retained the original configuration, and about half is inverted. Protonated nucleophiles, such as methanol, then lose a proton to the solvent.
 
SN1 reaction animation
 
 
 
 

The SN2 reaction

SN2 reaction
 
 
 
1.The SN2 reaction is a single-step displacement of a leaving group by a nucleophile.
 
2.During the transition state, the bond to the nucleophile forms at the same time that the bond to the leaving group breaks .
 
3.Therefore the nucleophile is required to approach from the back , and configuration at carbon is inverted.
 
SOURCE: http://www.bluffton.edu/~bergerd/classes/CEM221/sn-e/SN1-1.html
About the Author:
srujana (3045)

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Olaaa!! Perrrfect answer. 549  [699 rates]

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 this article: 144 points  (with 28 Olaaa!! Perrrfect answer.   in 30 votes )   [?]
 
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apurviitjee2008
apurviitjee2008 is offline comment by apurviitjee2008    (posted on 14 Dec 2007 14:25:03 IST)
Good one Srujana.........
aankurverma
aankurverma is offline comment by aankurverma    (posted on 14 Dec 2007 14:29:18 IST)
gud job done sis really impressive n vry usefull ,nicely explain
meggi
meggi is offline comment by meggi    (posted on 14 Dec 2007 15:21:32 IST)
really very nice yaar keep it up
swashata4iit
swashata4iit is offline comment by swashata4iit    (posted on 14 Dec 2007 15:36:30 IST)
nice article srujana!!!!! Especially the animations!! :)
kasirajan.1990
kasirajan.1990 is offline comment by kasirajan.1990    (posted on 14 Dec 2007 16:07:49 IST)
its awesome srujana...keep it up..
pujasinghtwinkle
pujasinghtwinkle is offline comment by pujasinghtwinkle    (posted on 14 Dec 2007 17:27:49 IST)
gr8888
ashgirl
ashgirl is offline comment by ashgirl    (posted on 14 Dec 2007 17:27:51 IST)
cool!!
gud work!!
:-)
nishantsingh89
nishantsingh89 is offline comment by nishantsingh89    (posted on 14 Dec 2007 17:29:53 IST)
awesome post srujana, the animations are simply great!!!!!

keep it up!!!!!
kislay
kislay is online comment by kislay    (posted on 14 Dec 2007 18:25:22 IST)
gud wrk.............
srujana
srujana is online comment by srujana    (posted on 14 Dec 2007 18:33:42 IST)
thanku frds.......
Mr.IITIAN007
Mr.IITIAN007 is offline comment by Mr.IITIAN007    (posted on 14 Dec 2007 18:44:03 IST)
cool animations Srujana and the explanation of mechanism is awsome !
pannaguma
pannaguma is offline comment by pannaguma    (posted on 14 Dec 2007 19:18:58 IST)
VERY GOOD, PLEASE COULD YOU DO THE SAME FOR ELIMINATION REACTIONS?
srujana
srujana is online comment by srujana    (posted on 14 Dec 2007 19:22:49 IST)
pannaguma , u can refer thiis link http://www.bluffton.edu/~bergerd/classes/CEM221/sn-e/SN1-1.html
fr E1 and E2.........
coolriya
coolriya is offline comment by coolriya    (posted on 14 Dec 2007 19:32:20 IST)
its really gr88888888888888...........................yaar... well done.....hats off...........
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