| Literature DB >> 31083290 |
Alena Khadieva1, Vladimir Gorbachuk2, Dmitriy Shurpik3, Ivan Stoikov4.
Abstract
A multicyclophane with a core based on tris(2-aminoethyl)amine (TREN) linked by amide spacers to three fragments of pillar[5]arene was synthesized. The choice of the tris-amide core allowed the multicyclophane to bind to anion guests. The presence of three terminal pillar[5]arene units provides the possibility of effectively binding the colorimetric probe N-phenyl-3-(phenylimino)-3H-phenothiazin-7-amine (PhTz). It was established that the multicyclophane complexed PhTz in chloroform with a 1:1 stoichiometry (lgKa = 5.2 ± 0.1), absorbing at 650 nm. The proposed structure of the complex was confirmed by 1H-NMR spectroscopy: the amide group linking the pillar[5]arene to the TREN core forms a hydrogen bond with the PhTz imino-group while the pillararenes surround PhTz. It was established that the PhTz:tris-pillar[5]arene complex could be used as a colorimetric probe for fluoride, acetate, and dihydrogen phosphate anions due to the anion binding with proton donating amide groups which displaced the PhTz probe. Dye displacement resulted in a color change from blue to pink, lowering the absorption band at 650 nm and increasing that at 533 nm.Entities:
Keywords: anion; complex; multipillar[5]arene; phenothiazine; pillar[5]arene
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Year: 2019 PMID: 31083290 PMCID: PMC6539510 DOI: 10.3390/molecules24091807
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Scheme 1Synthesis of tris-pillar[5]arene 4.
Figure 1Scheme of complex formation of compound 4 with PhTz and competitive complexation with anions.
Figure 2Titration graph of PhTz (C = 1 × 10−5 M) with tris-pillararene 4 (C=1 × 10−6 M–1 × 10−4 M), in legend the corresponding to graphs concentration ratios (eq.) [PhTz]:[4] are listed.
Figure 3Absorption spectra of PhTz:4 complex (C = 1 × 10−5 M, PhTz:4, ratio 1:1) in the presence of the tetrabutylammonium salts (C = 1 × 1 0−4 M) and photographs of corresponding solutions.
Figure 4The absorption band of complex PhTz:4 (equimolar mixture, C = 1 × 10−5 M) at different ratios of the dihydrogen phosphate anion. Ratios of [PhTz]:[H2PO4−] are listed on the inset.