Казанский (Приволжский) федеральный университет, КФУ
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ФЕДЕРАЛЬНЫЙ УНИВЕРСИТЕТ
 
RACEMIC 2-BUTANOL, 2-ETHYLHEXANOL AND MALIC ESTER IN THE SYNTHESIS OF AMMONIUM AND HEXADECYLAMMONIUM DITHIOPHOSPHONATES WITH ANTIMICROBIAL AND CYTOTOXIC ACTIVITY
Форма представленияСтатьи в зарубежных журналах и сборниках
Год публикации2025
Языканглийский
  • Низамов Ильнар Дамирович, автор
  • Низамов Ильяс Саидович, автор
  • Салихов Рамазан Зайтунович, автор
  • Якимов Владимир Юрьевич, автор
  • Калекулин Иван Ильич, автор
  • Библиографическое описание на языке оригинала Nizamov, I.S. Racemic 2-butanol, 2-ethylhexanol and malic ester in the synthesis of ammonium and hexadecylammonium dithiophosphonates with antimicrobial and cytotoxic activity / I.S. Nizamov, V.Yu. Yakimov, I.I. Kalekulin, I.D. Nizamov, R.Z. Salikhov, K.A. Ivshin, O.N. Kataeva, G.G. Garifzianova, D.Yu. Grishaev, M.P. Shulaeva, A.A. Parfenov, A.B. Vyshtakalyuk // J. Sulfur Chem. – 2025. – Vol., Is.. – P.1–19. (ISSN: 1741-5993 (Print) 1741-6000 (Online) Journal homepage: www.tandfonline.com/journals/gsrp20) DOI 10.1080/17415993.2025.2551759. SCOPUS, Q3
    Аннотация Dithiophosphonic acids were prepared by the reactions of Lawesson's reagent with racemic 2-butanol, 2-ethylhexanol and diethyl malate reacted with ammonia and hexade- cylamine to form ammonium and hexadecylammonium dithiophosphonates. The molecular structure of ammonium O-(2-butyl)-4-methoxyphenyldithiophosphonate derivative was established by X-ray single crystal analysis. The dithiophosphonic acids obtained and their ammonium salts possessed high hydrolytic stability, antimicrobial activity and low cytotoxicity. The chemical behavior of dithiophosphonic acids and their salts in water and the Mueller-Hinton nutrient broth was established. The electrical conductivity dithiophosphonic acids and their salts in water and in a water–ethanol mixture was studied.
    Ключевые слова Lawessons reagent, ammonia, hexadecylamine, antimicrobial activity, cytotoxicity
    Название журнала Journal of Sulfur Chemistry
    URL https://www.scopus.com/inward/record.uri?eid=2-s2.0-105016860199&doi=10.1080%2F17415993.2025.2551759&partnerID=40&md5=37ce06ecf48980f1865dff11a24f5a8b
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