Simple grinding for the synthesis of monomeric, dimeric, and trimeric pyridinium salts and its photophysical studies

Synthesis of water‐soluble‐substituted pyridinium cation which is attached with base sensitive fluorophore peripheral units with different inorganic counter anions under conventional/silica‐supported Muffle furnace methods. Solvent‐free synthetic approach has more merits than the conventional method...

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Veröffentlicht in:Journal of heterocyclic chemistry 2022-07, Vol.59 (7), p.1260-1265
Hauptverfasser: Manikandan, Chitrarasu, Govindaraj, Senthilnathan, Ganesan, Kilivelu
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container_issue 7
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container_title Journal of heterocyclic chemistry
container_volume 59
creator Manikandan, Chitrarasu
Govindaraj, Senthilnathan
Ganesan, Kilivelu
description Synthesis of water‐soluble‐substituted pyridinium cation which is attached with base sensitive fluorophore peripheral units with different inorganic counter anions under conventional/silica‐supported Muffle furnace methods. Solvent‐free synthetic approach has more merits than the conventional method, such as non‐toxic, shorter reaction time, easy workup procedure without purification process, and higher yields. Ultraviolet–visible spectra were recorded in neutral, acidic, and alkaline medium; it showed greater red shift in alkaline medium compared with neutral and acidic pH medium. Synthesis of water‐soluble‐substituted pyridinium cation which is attached with base sensitive fluorophore peripheral units with different inorganic counter anions under conventional/silica‐supported Muffle furnace methods. UV–visible spectra were recorded in different pH; it showed greater red shift in alkaline medium compared with lower pH.
doi_str_mv 10.1002/jhet.4467
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subjects Doppler effect
Muffle furnaces
Reaction time
Red shift
Synthesis
Ultraviolet spectra
title Simple grinding for the synthesis of monomeric, dimeric, and trimeric pyridinium salts and its photophysical studies
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