Please use this identifier to cite or link to this item: https://dspace.iiti.ac.in/handle/123456789/15920
Title: Design, synthesis, and redox properties of donor-π-donor ferrocenyl functionalized phenothiazine derivatives
Authors: Gupta, Deeksha
Tiwari, Nikhil Ji
Misra, Rajneesh
Issue Date: 2025
Publisher: Royal Society of Chemistry
Citation: Gupta, D., Tiwari, N. J., Singh, P. P., & Misra, R. (2025). Design, synthesis, and redox properties of donor-π-donor ferrocenyl functionalized phenothiazine derivatives. Dalton Transactions. https://doi.org/10.1039/d4dt03552f
Abstract: A set of ferrocenyl functionalized phenothiazine derivatives Fc1-4 were designed and synthesized via Pd-catalyzed Buchwald-Hartwig and Suzuki cross-coupling reactions. Phenothiazine was used as a central donor and ferrocenyl as a terminal donor unit. Herein we examine the impact of variation of substituents at the N-position of phenothiazine, including H, phenyl, phenyl-linked ferrocenyl, and biphenyl-linked ferrocenyl units on the photophysical, electrochemical, and thermal behaviors. The electronic absorption spectra reveal that the N-H and phenyl-substituted phenothiazine derivatives Fc1 and Fc2 show red-shifted absorption as compared to the tri-ferrocenyl substituted phenothiazine derivatives Fc3 and Fc4. The electrochemical studies reveal that Fc1 shows two quasi reversible and one reversible oxidation wave, whereas Fc2-4 exhibits two reversible oxidation waves. The spectroelectrochemical analysis of Fc1-4 revealed significant NIR spectral changes during the second oxidation cycle. DFT calculations were performed to optimize the molecular geometry and evaluate the frontier energy levels of Fc1-4. The structure of ferrocenyl functionalized phenothiazine derivatives Fc2 and Fc3 was confirmed by a single-crystal X-ray diffraction study. Fc2 and Fc3 crystallize as red needle-shaped crystals exhibiting zig-zag 3D crystal packing arrangements. This study highlights the photophysical, electrochemical, and redox characteristics of ferrocenyl-functionalized phenothiazine derivatives, making them potential candidates for optoelectronic applications. © 2025 The Royal Society of Chemistry.
URI: https://doi.org/10.1039/d4dt03552f
https://dspace.iiti.ac.in/handle/123456789/15920
ISSN: 1477-9226
Type of Material: Journal Article
Appears in Collections:Department of Chemistry

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