Synthesis and basic properties of tetrathieno[2,3-a:3a2,2a2-c:2a3,3a3-f:3a',2a'-h]naphthalene: a new I-conjugated system obtained by photoinduced electrocyclizationadehydrogenation reactions of tetra(3-thienyl)ethene

A method for the synthesis of tetrathieno[2,3-a:3a2,2a2-c:2a3,3a3-f:3a',2a'-h]naphthalene (3), utilizing photoinduced electrocyclizationadehydrogenation reactions of tetra(3-thienyl)ethene (1), was developed. Photoirradiation of a toluene or CHCl3 solution of 1, containing a small amount o...

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Veröffentlicht in:Tetrahedron letters 2013-07, Vol.54 (31), p.4049-4053
Hauptverfasser: Yamamoto, Atsushi, Ohta, Eisuke, Kishigami, Nao, Tsukahara, Norihiro, Tomiyori, Yusuke, Sato, Hiroyasu, Matsui, Yasunori, Kano, Yusuke, Mizuno, Kazuhiko, Ikeda, Hiroshi
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Sprache:eng
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Zusammenfassung:A method for the synthesis of tetrathieno[2,3-a:3a2,2a2-c:2a3,3a3-f:3a',2a'-h]naphthalene (3), utilizing photoinduced electrocyclizationadehydrogenation reactions of tetra(3-thienyl)ethene (1), was developed. Photoirradiation of a toluene or CHCl3 solution of 1, containing a small amount of I2, leads to modestly efficient production of 3. In contrast to the UV-vis absorption property of the typical p-type organic transistor material pentacene, that of 3 does not experience a time-dependent change under aerated conditions, indicating that 3 has high stability against molecular oxygen. The results of X-ray crystallographic analysis demonstrate that 3 possesses a columnar crystalline structure in which molecules are aligned in a face-to-face manner with a high degree of the IaI overlap between adjacent molecules. This phenomenon should result in efficient charge-carrier transport properties of the crystalline form of this substance.
ISSN:0040-4039
DOI:10.1016/j.tetlet.2013.05.090