Cetylpyridinium Trichlorostannate: Synthesis, Antimicrobial Properties, and Controlled-Release Properties via Electrical Resistance Tomography

Cetylpyridinium trichlorostannate (CPC-Sn), comprising cetylpyridinium chloride (CPC) and stannous chloride, was synthesized and characterized via single-crystal X-ray diffraction measurements indicating stoichiometry of C21H38NSnCl3 where the molecules are arranged in a 1:1 ratio with a cetylpyridi...

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Veröffentlicht in:ACS omega 2021-12, Vol.6 (51), p.35433-35441
Hauptverfasser: Teoman, Baran, Muneeswaran, Zilma Pereira, Verma, Gaurav, Chen, Dailin, Brinzari, Tatiana V, Almeda-Ahmadi, Allison, Norambuena, Javiera, Xu, Shaopeng, Ma, Shengqian, Boyd, Jeffrey M, Armenante, Piero M, Potanin, Andrei, Pan, Long, Asefa, Tewodros, Dubovoy, Viktor
Format: Artikel
Sprache:eng
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Zusammenfassung:Cetylpyridinium trichlorostannate (CPC-Sn), comprising cetylpyridinium chloride (CPC) and stannous chloride, was synthesized and characterized via single-crystal X-ray diffraction measurements indicating stoichiometry of C21H38NSnCl3 where the molecules are arranged in a 1:1 ratio with a cetylpyridinium cation and a [SnCl3]− anion. CPC-Sn has shown potential for application as a broad-spectrum antimicrobial agent, to reduce bacteria-generated volatile sulfur compounds and to produce advanced functional materials. In order to investigate its controlled-release properties, electrical resistance tomography was implemented. The results demonstrate that CPC-Sn exhibits extended-release properties in an aqueous environment as opposed to the CPC counterpart.
ISSN:2470-1343
2470-1343
DOI:10.1021/acsomega.1c04034