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Dibutylphosphinoylmethyloxythiacalix[4]arenes. Synthesis,structure, americium,europium and technetium extraction
Authors:Sergiy Kharchenko  Andriy Drapailo  Svitlana Shishkina  Oleg Shishkin  Maria Karavan  Igor Smirnov
Institution:1. Institute of Organic Chemistry, National Academy of Sciences of Ukraine, Murmanska Street, 5, 02660 Kyiv-94, Ukraine;2. State Scientific Institution “Institute of SingleCrystals”, National Academy of Sciences of Ukraine, Lenin Avenue, 60, 61001 Kharkiv-01, Ukraine;3. Department of Inorganic Chemistry, V.N. Karazin Kharkiv National University, Svobody Sq. 4, 61122 Kharkiv-77, Ukraine;4. Khlopin Radium Institute, 2nd Murinskiy Avenue 28, 194021 St. Petersburg, Russia
Abstract:A series of thiacalix4]arenes bearing one, two or four chelating dibutylphopshinoylmethoxy groups have been synthesised and studied in the context of this paper. The synthesis consisted of precise Williamson alkylation of thiacalixarene tetrols with tosylate of dibutylhydroxymethyl phosphine oxide in the presence of alkali metal carbonates or sodium hydride. Stereochemical yield of the reaction (cone or 1,3-alternate conformer) depends on the nature of alkali metal. Small-sized ‘hard’ sodium cation organises the macrocyclic platform in the cone conformation, but larger and ‘soft’ potassium and cesium cations stabilise the macrocycle in the 1,3-alternate conformation. All synthesised compounds (except monophosphine monoxide) possess either moderate or high extraction ability towards pertechnetate ion. The cone-shaped thiacalix4]arene tetraphosphine tetraoxide due to cooperative (macrocyclic) effect of eight oxygen atoms of the phosphinoylmetoxy-binding groups effectively extract spherical americium, europium cations due to cooperative (macrocyclic) effect of eight oxygen atoms of the phosphinoylmetoxy-binding groups. The extraction ability is very similar to that of calix5]arene pentaphosphine pentaoxide existing in the cone conformation.
Keywords:supramolecular chemistry  thiacalixarenes  phosphine oxides  X-ray analysis  metal extraction  radionuclides
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