Synthesis and Properties Study of 1-(2,4-dimethoxyl-5-pyrimidinyl)-2-[2-methyl-5-(2-chlorophenyl)-3-thieny-l]perfluorocyclopentene

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Abstract:

A novel photochromic diarylethene with a six-membered pyrimidine was synthesized to investigate its photochromic behaviors. This compound exhibited reversible photochromism, changing from colorless to red after irradiation with UV light both in solution and in poly-methyl methacrylate (PMMA) amorphous film. Moreover, it exhibited remarkable fluorescence switching in solution. The results indicated that the pyrimidine moiety played a very important role during the process of photochromic reaction for the diarylethene derivative.

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79-82

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November 2013

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] T. Tsujioka and M. Irie: J Photochem Photobiol C Vol. 11 (2010), p.1.

Google Scholar

[2] M. Irie: Chem. Rev. Vol. 100 (2000), p.1685.

Google Scholar

[3] H. Tian and S.J. Yang: Chem. Soc. Rev. Vol. 33 (2004), p.85.

Google Scholar

[4] K. Matsuda and M. Irie: J Photochem Photobiol C Vol. 5 (2004), p.169.

Google Scholar

[5] S. Kobatake, S. Takami, H. Muto, T. Ishikawa and M. Irie: Nature Vol. 446 (2007), p.778.

Google Scholar

[6] K. Higashiguchi, K. Matsuda, N. Tanifuji and M. Irie: J. Am. Chem. Soc. Vol. 127 (2005), p.8922.

Google Scholar

[7] M. Irie: Chem. Rev. Vol. 100 (2000), p.1685.

Google Scholar

[8] H. Tian and S.J. Yang: Chem. Soc. Rev. Vol. 33 (2004), p.85.

Google Scholar

[9] K. Matsuda, M. Irie: J Photochem Photobiol C Vol. 5 (2004), p.169.

Google Scholar

[10] S. Kobatake, S. Takami, H. Muto, T. Ishikawa and M. Irie: Nature Vol. 446 (2007), p.778.

Google Scholar

[11] X.D. Deng and L.S. Liebeskind: J. Am. Chem. Soc. Vol. 123 (2001), p.7703.

Google Scholar

[12] K. Uchida, T. shikawa, M. Takeshita and M. Irie: Tetrahedron Vol. 54 (1998), p.6627.

Google Scholar

[13] S. Takami and M. Irie: Tetrahedron Vol. 60 (2004), p.6155.

Google Scholar

[14] S.Z. Pu, H. Li, G. Liu and W.J. Liu: Tetrahedron Lett. Vol. 5 (2010), p.3575.

Google Scholar

[15] K. Uchida, T. Matsuoka, K. Sayo, M. Iwamoto, S. Hayashi and M. Irie: Chem. Lett. Vol. 8 (1999), p.835.

Google Scholar

[16] H.L. Liu, S.Z. Pu, G. Liu and B. Chen: Tetrahedron Lett. Vol. 54 (2013), p.646.

Google Scholar

[17] S.Z. Pu, H.H. Tang, B. Chen, J.K. Xu and W.H. Huang: Mater. Lett. Vol. 60 (2006), p.3553.

Google Scholar

[18] S.Z. Pu, G. Liu, G.Z. Li, R.J. Wang and T.S. Yang: J. Mol. Struct. Vol. 833 (2007), p.23.

Google Scholar

[19] S.Z. Pu, C.B. Fan, W.J. Miao and G. Liu: Dyes Pigm. Vol. 84 (2009), p.25.

Google Scholar

[20] B. Chen, M. Wang, Y. Wu and H. Tian: Chem. Commun. Vol. 21 (2002), p.1060.

Google Scholar

[21] H. Tian, B.Z. Chen, H.Y. Tu and K. Müllen: Adv. Mater. Vol. 17 (2002), p.918.

Google Scholar