Year 2018,
Volume: 2 Issue: 1, 50 - 55, 01.06.2018
Mehmet Ağırtaş
,
Muhammed Yusuf Öndeş
Beyza Cabir
References
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1. McKeown, N.B. Phthalocyanine Materials: Synthesis, Structure and Function, Cambridge University Press, Cambridge, 1998.
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2. Leznoff, C.C.; Lever, A.B.P. Eds. Phthalocyanines: Properties and Applications, vol. 4, VCH, New York, 1989.
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19. Nyokong, T., Antunes, E. Photochemical and Photophysical Properties of Metallophthalocyanines. Handbook of Porphyrin Science, 2010, pp. 247-357.
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20. Claessens, C.G.; Hahn, U.; Torres, T. Chem. Rec. 2008, 8, 75-97.
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21. Tillo, A.; Stolarska, M.; Kryjewski, M.; Popenda, L.; Sobotta, L.; Jurga, S.; Mielcarek, J.; Goslinski, T. Dyes Pigments 2016, 127, 110-115.
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22. Armarego, W.L.F.; Chai, C.L.L. Purification of laboratory Chemicals, 7nd ed., Butterwordh-Heinemann, Oxford, 2013.
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23. Saka, E.T.; Kobak, R.Z.U.; Alp, H.; Sarkı, G.; Koca, A.; Kantekin, H. Synthetic Met. 2016, 217, 295–303.
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24. Fukuda, T.; Kobayashi, N. In: Kadish KM, Smith KM, Guilard R, editors. Handbook of porphyrin science with applications to chemistry, physics, materials science, engineering, biology and medicine, Singapore: World Scientific Publishing Co. Pte. Ltd, vol. 9, 2010.
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25. Mehraban, N.; Freeman, H.S. Materials 2015, 8, 4421-4456.
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26. Saka, E.T.; Durmuş, M.; Kantekin, H. J. Organomet. Chem. 2011, 696, 913-924.
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27. İşçi, Ü.; Beyreis, M.; Tortik, N.; Topal, S.Z.; Glueck, M.; Ahsen, V.; Dumoulina, F.; Kiesslich, T.; Plaetzer, K. Photodiagn. Photodyn. 2016, 13, 40–47.
Practical synthesis, characterization and photo-physical properties of metallophthalocyanines bearing benzhydryloxy substituents
Year 2018,
Volume: 2 Issue: 1, 50 - 55, 01.06.2018
Mehmet Ağırtaş
,
Muhammed Yusuf Öndeş
Beyza Cabir
Abstract
The aim of present
study is to make practical synthesis of benzhydryloxy substituted
phthalocyanines with high solubility. Therefore, the synthesis and
characterization of benzhydryloxy substituted zinc and magnesium of phthalocyanines
were performed. The characterization of the new compounds was made by spectra
such as IR, NMR, UV and Mass spectra. In addition, fluorescence and aggregation
behaviors of these new compounds were investigated. It was seen to be obtained
the compounds more economically with the method used.
References
-
1. McKeown, N.B. Phthalocyanine Materials: Synthesis, Structure and Function, Cambridge University Press, Cambridge, 1998.
-
2. Leznoff, C.C.; Lever, A.B.P. Eds. Phthalocyanines: Properties and Applications, vol. 4, VCH, New York, 1989.
-
3. Garland, A.D.; Chambrier, I.; Cammidge, A.N.; Cook, M.J. Tetrahedron 2015, 71, 7310-7314.
-
4. Lianga, Q.; Zhanga, M.; Liub, C.; Xua, S.; Li, Z. Appl. Catal. A. 2016, 519,107–115.
-
5. Shi, J.; Luan, L.; Fang, W.; Zhao, T.; Liu, W.; Cui, D. Sens. Actuators B. 2014, 204, 218–223.
-
6. Sánchez-Díaz, A.; Pacios, R.; Muñecas, U.; Torres, T.; Palomares, E. Org. Electron. 2011, 12: 329– 335.
-
7. Lile, J.R.D.; Heine, T.; Zhou, S. Comp. Mater. Sci. 2017, 129, 24–36.
-
8. Shao, X.; Wang, S:; Li, X.; Su, Z.; Chen, Y.; Xiao, Y. Dyes Pigments 2016, 132, 378-386.
-
9. Deng, Z.; Lü, Z.; Chen, Y.; Yin, Y.; Zou, Y.; Xiao, J.; Wang, Y. Solid State Electron. 2013, 89, 22–25.
-
10. Ma, D.; Pan, S.; Zhang, T.; Huang, B.; Xie, S.; Yang, H.; Peng, Y. Dyes Pigments 2016, 127,78-86.
-
11. Sekhosana, K.E.; Nyokong, T. J. Mol. Struct. 2016, 1117,140-146.
-
12. Wang, A.; Gui, L.; Lu, S.; Zhou, L.; Zhou, J.; Wei, S. Dyes Pigments. 2016, 126, 239-250.
-
13. Erdoğmus, A.; Arıcı, M. J. Fluorine Chem. 2014, 166, 127–133.
-
14. Ağırtaş, M.S. Dyes Pigments. 2008, 79, 247-51.
-
15. Ağırtaş, M.S. Inorg. Chim. Acta 2007, 360, 2499–502.
-
16. Bandera, Y.; Burdette, M.K.; Shetzline, J.A.; Jenkins, R.; Creager, S.E.; Foulger, S.H. Dyes Pigments 2016, 125, 72-79.
-
17. Palewska, K.; Sworakowski, J.; Lipinski, J. Opt. Mater. 2012, 34, 1717–1724.
-
18. Chen, J.; Zhang, T.; Wang, S.; Hu, R.; Li, S.; Ma, J.S.; Yang, G. Spectrochim. Acta A. 2015, 149, 426–433.
-
19. Nyokong, T., Antunes, E. Photochemical and Photophysical Properties of Metallophthalocyanines. Handbook of Porphyrin Science, 2010, pp. 247-357.
-
20. Claessens, C.G.; Hahn, U.; Torres, T. Chem. Rec. 2008, 8, 75-97.
-
21. Tillo, A.; Stolarska, M.; Kryjewski, M.; Popenda, L.; Sobotta, L.; Jurga, S.; Mielcarek, J.; Goslinski, T. Dyes Pigments 2016, 127, 110-115.
-
22. Armarego, W.L.F.; Chai, C.L.L. Purification of laboratory Chemicals, 7nd ed., Butterwordh-Heinemann, Oxford, 2013.
-
23. Saka, E.T.; Kobak, R.Z.U.; Alp, H.; Sarkı, G.; Koca, A.; Kantekin, H. Synthetic Met. 2016, 217, 295–303.
-
24. Fukuda, T.; Kobayashi, N. In: Kadish KM, Smith KM, Guilard R, editors. Handbook of porphyrin science with applications to chemistry, physics, materials science, engineering, biology and medicine, Singapore: World Scientific Publishing Co. Pte. Ltd, vol. 9, 2010.
-
25. Mehraban, N.; Freeman, H.S. Materials 2015, 8, 4421-4456.
-
26. Saka, E.T.; Durmuş, M.; Kantekin, H. J. Organomet. Chem. 2011, 696, 913-924.
-
27. İşçi, Ü.; Beyreis, M.; Tortik, N.; Topal, S.Z.; Glueck, M.; Ahsen, V.; Dumoulina, F.; Kiesslich, T.; Plaetzer, K. Photodiagn. Photodyn. 2016, 13, 40–47.