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Core-modified, meso-alkylidenyl porphyrins and their expanded analogues: A new family of nonplanar porphyrinoids

Authors
Jeong, Seung-DooHong, Seong-JinPark, Kee JongHam, SihyunSessler, Jonathan L.Lynch, VincentLee, Chang-Hee
Issue Date
Aug-2007
Publisher
AMER CHEMICAL SOC
Citation
JOURNAL OF ORGANIC CHEMISTRY, v.72, no.16, pp 6232 - 6240
Pages
9
Journal Title
JOURNAL OF ORGANIC CHEMISTRY
Volume
72
Number
16
Start Page
6232
End Page
6240
URI
https://scholarworks.sookmyung.ac.kr/handle/2020.sw.sookmyung/14644
DOI
10.1021/jo070872k
ISSN
0022-3263
1520-6904
Abstract
New core-modified, meso-alkylidenyl porphyrinoids bearing multiple exocyclic double bonds were synthesized and characterized. The synthesis was accomplished using a typical "3 + 1"-type condensation approach. Stable exocyclic tautomers bearing double bonds at the meso positions, as well the corresponding endocyclic tautomers, were isolated in the case of both thiabenziporphyrin and thiapyriporphyrin products prepared in the course of this study. On the other hand, only the exocyclic tautomer was isolated in the case of the congeneric oxapyriporphyrin and oxabenziporphyrin. Expanded analogues of the exocyclic forms of oxabenziporphyrin and thiabenziporphyrin were also isolated as minor products. A single-crystal X-ray diffraction analysis of the expanded thiabenziporphyrin (20) revealed that all four pyrrole rings displayed an inverted geometry, presumably reflecting the strong hydrogen-bonding extant between the pyrrole N-H proton and the carbonyl group of the malonate moiety in the solid state. On the other hand, the expanded oxabenziporphyrin (14) was found to possess a severely distorted geometry with only one pyrrole ring being inverted. Careful analysis of the structure revealed that the solid-state geometry of the expanded macrocycles correlates well with the internal angle defined by the 2- and 5 substituents and the centers of the furan (14) or thiophene (20) subunits.
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