1998
DOI: 10.1039/a800088c
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MCD of non-aromatic cyclic π-electron systems. Part 1. The perimeter model for antiaromatic 4N-electron [n]annulene biradicals 1

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Cited by 42 publications
(83 citation statements)
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“…This is in contrast to the system derived from the (4N + 2)-electron perimeter model where the low-energy absorption bands consist of the electronic transitions involving four molecular porbitals. [9][10][11] Michl et al used a new classification of even-electron cyclic p-systems for the purposes of electronic and MCD spectroscopy, [12] and we follow their classification in the present study. Thus, the term "antiaromatic" is used only for even-electron cyclic p-electron systems that have very strong biradical-like character.…”
Section: Resultsmentioning
confidence: 94%
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“…This is in contrast to the system derived from the (4N + 2)-electron perimeter model where the low-energy absorption bands consist of the electronic transitions involving four molecular porbitals. [9][10][11] Michl et al used a new classification of even-electron cyclic p-systems for the purposes of electronic and MCD spectroscopy, [12] and we follow their classification in the present study. Thus, the term "antiaromatic" is used only for even-electron cyclic p-electron systems that have very strong biradical-like character.…”
Section: Resultsmentioning
confidence: 94%
“…Thus, the term "antiaromatic" is used only for even-electron cyclic p-electron systems that have very strong biradical-like character. According to this definition, [12] the reduced form of the present hexaphyrins (Au 2 -R and Au-R) are classified into an "unaromatic" system, which describes cyclic p-electron systems derivable from a 4N-electron perimeter by perturbations that are strong enough to remove biradical-like character. In the case of the neutral forms (Au 2 -N and Au-N), we will consider the (4N + 2)-electron perimeter model, which has been shown to be useful for analyzing the electronic absorption and MCD spectra of aromatic porphyrinoids.…”
Section: Resultsmentioning
confidence: 99%
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“…[11][12][13][14][15][16][17] This approach, originally applied to understand the electronic spectra of aromatic hydrocarbons, was subsequently adapted and extended to encompass magnetic circular dichroism (MCD). The perimeter model correctly accounts for the electronic and MCD patterns in numerous compounds that can be derived from either 4N+2 [11][12][13][14] or 4N [15][16][17] p-electron perimeters. In several cases, the theoretical predictions [18] preceded the synthesis of the systems in question and hence necessarily antedated experimental confirmation.…”
Section: Introductionmentioning
confidence: 99%