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Polyphenylenepyridines Based on Acetylaromatic Compounds

JOURNAL OF COMPOSITES SCIENCE(2023)

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Abstract
Nitrogen-containing polyphenylene type polymers containing pyridine rings were synthesized. The polymer-forming reaction is based on the interaction of diacetylarylene and triethylorthoformate with the formation of a pyrylium salt and subsequent treatment of the intermediate product with ammonia. The optimal ratios of the reagents for the formation of the pyridine fragment were determined. The mechanism of the main reaction is discussed. The formation of the pyridine ring and phentriyl (1,3,5-triphenylsubstituted benzene) fragments was confirmed using H-1 NMR data of the example of model reactions. After heating at a temperature of 450 degrees C, when a more complete polycondensation process occurs, the polymers reach high values of thermal characteristics-10% weight loss in an inert atmosphere corresponds to 600 degrees C. The structure of the synthesized polymers was confirmed using elemental analysis, IR, XPS, and EPR spectroscopy. The conjugation length in cross-linked polyphenylene pyridines can be controlled by varying the arylene bridge groups between the phentriyl fragments, which opens up opportunities for the development of new composite materials for electrical applications.
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Key words
supercapacitors,polyphenylenes,polyphenylenepyridines,diacetylaromatic compounds,triethylorthoformate,pyrilium salt,thermostability,conductive polymers,paramagnetic centers
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