A test set 264 nucleophilic substitution reactions was studied via accurate quantum chemical reactions to establish the relative preferences for SN1 versus SN2 mechanisms. In low polar solvents, reactions involving anionic nucleophiles and leaving groups favored SN2 pathways. In contrast, SN1 is preferred for those reactions involving neutral nucleophiles and leaving groups except where the carbocation intermediates are exceptionally unstable. For neutral nucleophiles and anionic leaving groups, SN2 is generally preferred over SN1 except for exceptionally stable carbocation intermediates. On the basis of these studies, candidate reactions for which distinct SN1 or SN2 preferences could be reversed by electric fields were selected. As proof ...
We have quantum chemically analyzed the competition between the bimolecular nucleophilic substitutio...
Biomolecular nucleophilic substitution reactions, SN2, are fundamental and commonplace in chemistry....
We have quantum chemically investigated the archetypal nucleophilic substitution reactions at carbon...
A test set 264 nucleophilic substitution reactions was studied via accurate quantum chemical reactio...
The activation of the SN2 reaction by π systems is well documented in textbooks. It has been shown p...
The activation of the SN2 reaction by π systems is well documented in textbooks. It has been shown p...
We have quantum chemically studied the effect of various polar and apolar solvents on the shape of t...
The concepts of nucleophilicity and protophilicity are fundamental and ubiquitous in chemistry. A ca...
The concepts of nucleophilicity and protophilicity are fundamental and ubiquitous in chemistry. A ca...
(Chemical Equation Presented) Nucleophilic substitution is ubiquitous in chemistry and well studied....
The concepts of nucleophilicity and protophilicity are fundamental and ubiquitous in chemistry. A ca...
The competition between substitution (SN2) and elimination (E2) in nucleophilic reactions of alkyl h...
Biomolecular nucleophilic substitution reactions, SN2, are fundamental and commonplace in chemistry....
Biomolecular nucleophilic substitution reactions, SN2, are fundamental and commonplace in chemistry....
148 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2000.These results suggest that su...
We have quantum chemically analyzed the competition between the bimolecular nucleophilic substitutio...
Biomolecular nucleophilic substitution reactions, SN2, are fundamental and commonplace in chemistry....
We have quantum chemically investigated the archetypal nucleophilic substitution reactions at carbon...
A test set 264 nucleophilic substitution reactions was studied via accurate quantum chemical reactio...
The activation of the SN2 reaction by π systems is well documented in textbooks. It has been shown p...
The activation of the SN2 reaction by π systems is well documented in textbooks. It has been shown p...
We have quantum chemically studied the effect of various polar and apolar solvents on the shape of t...
The concepts of nucleophilicity and protophilicity are fundamental and ubiquitous in chemistry. A ca...
The concepts of nucleophilicity and protophilicity are fundamental and ubiquitous in chemistry. A ca...
(Chemical Equation Presented) Nucleophilic substitution is ubiquitous in chemistry and well studied....
The concepts of nucleophilicity and protophilicity are fundamental and ubiquitous in chemistry. A ca...
The competition between substitution (SN2) and elimination (E2) in nucleophilic reactions of alkyl h...
Biomolecular nucleophilic substitution reactions, SN2, are fundamental and commonplace in chemistry....
Biomolecular nucleophilic substitution reactions, SN2, are fundamental and commonplace in chemistry....
148 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2000.These results suggest that su...
We have quantum chemically analyzed the competition between the bimolecular nucleophilic substitutio...
Biomolecular nucleophilic substitution reactions, SN2, are fundamental and commonplace in chemistry....
We have quantum chemically investigated the archetypal nucleophilic substitution reactions at carbon...