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Russian Chemical Reviews, 2009, Volume 78, Issue 2, Pages 141–164
DOI: https://doi.org/10.1070/RC2009v078n02ABEH003900
(Mi rcr152)
 

This article is cited in 214 scientific papers (total in 214 papers)

Merocyanine dyes: synthesis, structure, properties and applications

A. V. Kulinich, A. A. Ishchenko

Institute of Organic Chemistry, National Academy of Sciences of Ukraine, Kyiv
Abstract: Key approaches to the synthesis of merocyanine dyes are summarised. The dependence of the dye properties on their chemical structure, the solvent nature and the aggregation type is analysed. The main methods of studying the electronic structure of merocyanines are considered. Attention is focused on polyene–polymethine electron transitions. The applications of merocyanines in modern research, including the design of new materials and technologies (non-linear optics, photovoltaics, holography, etc.) are presented.
Received: 07.10.2008
Bibliographic databases:
Document Type: Article
Language: English
Original paper language: Russian


Citation: A. V. Kulinich, A. A. Ishchenko, “Merocyanine dyes: synthesis, structure, properties and applications”, Usp. Khim., 78:2 (2009), 151–175; Russian Chem. Reviews, 78:2 (2009), 141–164
Linking options:
  • https://www.mathnet.ru/eng/rcr152
  • https://doi.org/10.1070/RC2009v078n02ABEH003900
  • https://www.mathnet.ru/eng/rcr/v78/i2/p151
  • This publication is cited in the following 214 articles:
    1. Quintashia D. Wilson, Helen H. Lin, Eric Y. Lin, Lin-Jiun Chen, Ellen M. Sletten, Anal. Chem., 2025  crossref
    2. Tingting Wu, Matthew R. King, Yuanxin Qiu, Mina Farag, Rohit V. Pappu, Matthew D. Lew, Nat. Phys., 2025  crossref
    3. Yinan Zhang, Xiu-Ni Hua, Zhuoer Cai, Baiwang Sun, Journal of Molecular Structure, 1310 (2024), 138335  crossref
    4. Haruka Nishihara, Mai Watanabe, Ryosuke Kawakami, Masamoto Murakami, Hitomi Seki, Katsuki Osaki, Teruko Tsuda, Takeshi Imamura, Shingo Hadano, Shigeru Watanabe, Yosuke Niko, Bulletin of the Chemical Society of Japan, 97:3 (2024)  crossref
    5. Divya Pant, Sanyasi Sitha, Int J of Quantum Chemistry, 124:1 (2024)  crossref
    6. Kostyantyn Grytsenko, Tamara Doroshenko, Yurii Kolomzarov, Petro Lytvyn, Yurii Slominskii, Macro Materials & Eng, 309:3 (2024)  crossref
    7. Andrii V. Kulinich, Alexander A. Ishchenko, The Chemical Record, 24:2 (2024)  crossref
    8. Sanyasi Sitha, ChemistrySelect, 9:28 (2024)  crossref
    9. Ilona Pyszka, Przemysław Krawczyk, Beata Jȩdrzejewska, Materials, 17:10 (2024), 2447  crossref
    10. Divya Pant, Sanyasi Sitha, J Mol Model, 30:8 (2024)  crossref
    11. Andrew D. Towns, Kirk‐Othmer Encyclopedia of Chemical Technology, 2024, 1  crossref
    12. Sanyasi Sitha, J of Physical Organic Chem, 2024  crossref
    13. Andrii V. Kulinich, Alexander A. Ishchenko, Chem. Rev., 2024  crossref
    14. Anchal Debnath, Chandan Debnath, Shyam Kumar Bhattacharjee, Syed Arshad Hussain, Debajyoti Bhattacharjee, Interactions, 245:1 (2024)  crossref
    15. Benjamin Mourot, Denis Jacquemin, Olivier Siri, Simon Pascal, The Chemical Record, 2024  crossref
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    17. Anna J. Kny, Max Reimer, Noah Al-Shamery, Ritu Tomar, Thomas Bredow, Selina Olthof, Dirk Hertel, Klaus Meerholz, Moritz Sokolowski, Nanoscale, 15:24 (2023), 10319  crossref
    18. Yuliya Zhukova, Yaroslav Studenyak, Ruslan Mariychuk, Denys Snigur, J Solution Chem, 52:8 (2023), 870  crossref
    19. Niyazbek Kh. Ibrayev, Evgeniya V. Seliverstova, Rashid R. Valiev, Assel E. Kanapina, Alexander A. Ishchenko, Andrii V. Kulinich, Theo Kurten, Dage Sundholm, Phys. Chem. Chem. Phys., 25:34 (2023), 22851  crossref
    20. Sergey V. Karpov, Yakov S. Kaukov, Oleg E. Nasakin, Tetrahedron Letters, 125 (2023), 154625  crossref
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