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  4. The gas phase acidity of oligofluorobenzenes and oligochlorobenzenes: about the additivity or non-additivity of substituent effects
 
research article

The gas phase acidity of oligofluorobenzenes and oligochlorobenzenes: about the additivity or non-additivity of substituent effects

Hyla-Kryspin, Isabella
•
Grimme, Stefan
•
Bueker, Heinz H.
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2005
Chemistry - A European Journal

The deprotonation energies of benzene, fluorobenzene, all di-, tri-, and tetrafluorobenzenes, pentafluorobenzene, chlorobenzene, all di-, tri-, and tetrachlorobenzenes, and pentachlorobenzene have been calcd. at various levels of second-order Moller-Plesset and d. functional theory. Taking the previously detd. exptl. data as a benchmark, good agreement was achieved in the chloro series even with moderate computational effort, whereas more extended basis sets have to be used to obtain meaningful nos. in the fluoro series. Apparently, most extensive electron correlation is required to avoid artifacts caused by the proximity of non-bonding lone pairs at the carbanionic center and at the fluorine atoms. When two or more fluorine substituents were introduced in the same arom. ring, their individual effects (as defined by position-dependent acidity increments) proved to be perfectly additive in the entire series. In contrast, the acidifying effect of chloro substituents was found to level off when the no. of such halogens increases. Additivity or non-additivity of element effects cannot be ascertained after having merely compared the acidity of mono- and disubstituted substrates, but only after having moved to higher degrees of substitution. [on SciFinder (R)]

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Type
research article
DOI
10.1002/chem.200400967
Web of Science ID

WOS:000226997000021

Author(s)
Hyla-Kryspin, Isabella
Grimme, Stefan
Bueker, Heinz H.
Nibbering, Nico M. M.
Cottet, Fabrice  
Schlosser, Manfred  
Date Issued

2005

Published in
Chemistry - A European Journal
Volume

11

Issue

4

Start page

1251

End page

1256

Subjects

Additivity; Deprotonation enthalpy; Proton affinity; Substituent effects (DFT and MP2 study on gas-phase acidity of oligofluorobenzenes and oligochlorobenzenes); Aromatic compounds Role: PRP (Properties) (chloroarom.; DFT and MP2 study on gas-phase acid

•

gas phase acidity oligofluorobenzene oligochlorobenzene DFT MP2

Note

CAN 142:354905 22-12 Physical Organic Chemistry Organisch-Chemisches Institut,Universitaet Muenster,Muenster,Germany. Journal 0947-6539 written in English. 71-43-2 (Benzene); 87-61-6 (1,2,3-Trichlorobenzene); 95-50-1 (1,2-Dichlorobenzene); 95-94-3 (1,2,4,5-Tetrachlorobenzene); 106-46-7 (1,4-Dichlorobenzene); 108-70-3 (1,3,5-Trichlorobenzene); 108-90-7 (Chlorobenzene); 120-82-1 (1,2,4-Trichlorobenzene); 327-54-8 (1,2,4,5-Tetrafluorobenzene); 363-72-4 (Pentafluorobenzene); 367-11-3 (1,2-Difluorobenzene); 367-23-7 (1,2,4-Trifluorobenzene); 372-18-9 (1,3-Difluorobenzene); 372-38-3 (1,3,5-Trifluorobenzene); 462-06-6 (Fluorobenzene); 540-36-3 (1,4-Difluorobenzene); 541-73-1 (1,3-Dichlorobenzene); 551-62-2 (1,2,3,4-Tetrafluorobenzene); 608-93-5 (Pentachlorobenzene); 634-66-2 (1,2,3,4-Tetrachlorobenzene); 634-90-2 (1,2,3,5-Tetrachlorobenzene); 1489-53-8 (1,2,3-Trifluorobenzene); 2367-82-0 (1,2,3,5-Tetrafluorobenzene); 30922-78-2 (Phenyl anion); 66186-10-5; 72863-52-6; 72863-53-7; 77748-34-6; 77748-35-7; 77748-42-6; 77748-43-7; 124020-65-1; 145653-78-7; 145653-79-8; 145653-80-1; 145653-81-2; 145653-82-3; 145653-83-4; 145653-84-5; 145653-85-6; 145653-86-7; 150295-36-6; 158397-86-5; 158397-87-6; 158397-88-7; 158397-89-8; 177267-59-3; 177267-67-3; 177267-69-5; 177267-70-8; 177267-71-9; 215160-91-1; 848933-91-5; 848933-92-6; 848933-93-7; 848933-94-8; 848933-95-9; 848933-96-0; 848933-97-1; 848933-98-2; 848933-99-3; 848934-01-0 Role: PRP (Properties) (DFT and MP2 study on gas-phase acidity of oligofluorobenzenes and oligochlorobenzenes)

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REVIEWED

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Available on Infoscience
March 3, 2006
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/227044
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