Photophysical properties of core-modified expanded porphyrins: nature of aromaticity and enhancement of ring planarity

Yoon, Min Chul ; Misra, Rajneesh ; Yoon, Zin Seok ; Kim, Kil Suk ; Lim, Jong Min ; Chandrashekar, Tavarekere K. ; Kim, Dongho (2008) Photophysical properties of core-modified expanded porphyrins: nature of aromaticity and enhancement of ring planarity Journal of Physical Chemistry, 112 (23). pp. 6900-6905. ISSN 0022-3654

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Official URL: http://pubs.acs.org/doi/abs/10.1021/jp800748n

Related URL: http://dx.doi.org/10.1021/jp800748n

Abstract

We have investigated the excited-state dynamics and nonlinear optical properties of representative core-modified expanded porphyrins, tetrathiarubyrin, tetraselenarubyrin, pentathiaheptaphyrin, tetrathiaoctaphyrin, and tetraselenaoctaphyrin, containing 26, 30, and 34 π electrons using steady-state and time-resolved absorption and fluorescence spectroscopic measurements along with femtosecond Z-scan method, with a particular attention to the photophysical properties related to molecular planarity and aromaticity. Core-modification of macrocycles by sulfur and selenium leads to NIR-extended steady-state absorption and fluorescence spectra and short-lived excited-state due to the heavy-atom effect in time-resolved spectroscopic experiments. Large negative nucleus-independent chemical shift values ranging from -13 to -15 ppm indicate that all molecular systems are highly aromatic. The observed enhancement of two-photon absorption cross-section values over 104 GM for core-modified hepta- and octaphyrins is mainly attributable to their rigid and planar structures as well as their aromaticity. Overall, the observed spectroscopic and theoretical results consistently demonstrate the enhanced molecular planarity of core-modified expanded porphyrins compared with their corresponding all-aza expanded porphyrins.

Item Type:Article
Source:Copyright of this article belongs to American Chemical Society.
ID Code:85838
Deposited On:06 Mar 2012 07:21
Last Modified:06 Mar 2012 07:21

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