A series of aza[n]helicenes (n = 4–7) was synthesized using
a photocyclodehydrochlorination
of 1-chloro-N-aryl-2-naphthamides as a general synthetic
procedure introducing the nitrogen atom to the third ring of the helicene
framework. The effect of the nitrogen presence in the helicene skeleton
on the physicochemical properties of the prepared aza[n]helicenes was studied and compared to those of the parent carbo-analogues.
The insertion of a nitrogen atom into the outer edge of the helicene
molecule has a severe impact on certain physicochemical properties
such as optical rotation, electrostatic potentials, and intermolecular
interactions. On the other hand, some other properties such as UV/vis,
fluorescence, and phosphorescence spectra remained almost unaffected
when compared to the parent carbohelicenes. A nitrogen atom can be
also used for further derivatization, which can lead to further modification
of helicene properties, as manifested here in the fluorescence changes
induced by protonation.
A series of aza[n]helicenes (n = 4–7) was synthesized using
a photocyclodehydrochlorination
of 1-chloro-N-aryl-2-naphthamides as a general synthetic
procedure introducing the nitrogen atom to the third ring of the helicene
framework. The effect of the nitrogen presence in the helicene skeleton
on the physicochemical properties of the prepared aza[n]helicenes was studied and compared to those of the parent carbo-analogues.
The insertion of a nitrogen atom into the outer edge of the helicene
molecule has a severe impact on certain physicochemical properties
such as optical rotation, electrostatic potentials, and intermolecular
interactions. On the other hand, some other properties such as UV/vis,
fluorescence, and phosphorescence spectra remained almost unaffected
when compared to the parent carbohelicenes. A nitrogen atom can be
also used for further derivatization, which can lead to further modification
of helicene properties, as manifested here in the fluorescence changes
induced by protonation.
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