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Title: | Photocatalytic C-H Thiocyanation of Corroles: Development of Near-Infrared (NIR)-Emissive Dyes |
Authors: | Mobin, Shaikh M. |
Keywords: | Activation analysis;Chemical activation;Chlorophyll;Emission spectroscopy;Gold compounds;Metal complexes;Scaffolds;Scaffolds (biology);Single crystals;Synthesis (chemical);Absorption and emission spectra;Absorption features;Photophysical properties;Photoredox reactions;Single crystal XRD;Spectroscopic models;Synthesized molecules;Weak interactions;Infrared devices;2,3,17,18 tetrathiocyanato 10 (4 bromophenyl) 5,15 bis(4 cyanophenyl)corrole;2,3,17,18 tetrathiocyanato 10 (4,7 dimethoxynaphthalen 1 yl) 5,15 bis(4 cyanophenyl)corrole;2,3,17,18 tetrathiocyanato 5,10,15 triphenylcorrole;2,3,17,18 tetrathiocyanato 5,10,15 tris(4 cyanophenyl)corrole;2,3,17,18 tetrathiocyanato 5,10,15 tris(4nitrophenyl)corrole;2,3,17,18 tetrathiocyanato 5,10,15 tris(pentafluorophenyl)corrole);chlorophyll a;dye;macrocyclic compound;thiocyanate;unclassified drug;[2,3,17,18 tetrathiocyanato 5,10,15 tris(4 cyanophenyl)corrolato au(iii)];Article;controlled study;drug synthesis;Fourier transform infrared spectroscopy;infrared radiation;nonhuman;photocatalysis;room temperature;ultraviolet spectrophotometry;X ray diffraction |
Issue Date: | 2021 |
Publisher: | American Chemical Society |
Citation: | Sahu, K., Mondal, S., Mobin, S. M., & Kar, S. (2021). Photocatalytic C-H thiocyanation of corroles: Development of near-infrared (NIR)-emissive dyes. Journal of Organic Chemistry, 86(4), 3324-3333. doi:10.1021/acs.joc.0c02683 |
Abstract: | A new method of activating corrole macrocycles via an in situ generated SCN radical has been developed at very mild conditions at room temperature. This photoredox reaction resulted in the generation of tetrathiocyanatocorroles in good yields. The synthesis of tetrathiocyanatocorroles was never reported earlier. Single-crystal XRD analysis reveals that the insertion of four thiocyanate moieties at the four β-pyrrolic positions has imparted significant distortion to the corrole macrocycle. The generated tetrathiocyanatocorroles are different from the parent corroles in many ways. The photophysical properties of the newly synthesized tetrathiocyanatocorroles are dramatically altered from the parent corroles. The absorption feature of these modified corrole derivatives (both position and intensity) bears a nice similarity with the chlorophyll-a macrocycle. Thus, these newly synthesized molecules can be considered as spectroscopic model systems for chlorophyll-a pigments. The observed absorption and emission spectra of these tetrathiocyanatocorroles certainly point out that these newly developed ligand scaffolds and their various metal complexes will have immense potential as pigments in solar cells and also as NIR-emissive dyes. The observed C-H···Au weak interactions in a representative Au(III)-corrole complex point out that these complexes are capable of activating the unfunctionalized C-H groups and thus will have potential implications in C-H activation reactions. © 2021 American Chemical Society. |
URI: | https://doi.org/10.1021/acs.joc.0c02683 https://dspace.iiti.ac.in/handle/123456789/8721 |
ISSN: | 0022-3263 |
Type of Material: | Journal Article |
Appears in Collections: | Department of Chemistry |
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