Synthesis and enantiomeric recognition studies of triazine-based chiral fluorescent compounds
Öz
In this study novel fluorescence active, two triazine based thiazole derivatives, (2R,2'R)-2,4,6-triamine-N2-[2-(4-benzothiazolyl)phenyl]-N4,N6-[di(butan-1-ol)]-1,3,5-triazine and (1S,1'S,2R,2'R)-2,4,6-triamine-N2-[2-(4-benzothiazolyl)phenyl]-N4,N6-[di(1,2-diphenylethanol)]-1,3,5-triazine with chiral aminoalcohol groups were synthesized conveniently. Their enantiomeric recognition abilities toward the enantiomers of carboxylic acids such as mandelic acid and 2-chloromandelic acid were examined in DMSO/H2O (30:70) system using fluorescence spectroscopy. It was observed that DMSO solutions of chiral selectors showed no fluorescence emission while the emission increased 38 and 43 fold in 95% H2O for butan-1-ol and diphenylethanol derivatives, respectively similar with the aggregation-induced emission (AIE) characterized compounds. In the light of the experiment results, it was determined that the R-isomers of carboxylic acids formed more favourable complexes with the chiral selectors when compared to S-isomers.
Anahtar Kelimeler
Kaynakça
- Dong, J., Zhou, Y., Zhang, F. and Cui, Y., A Highly Fluorescent Metallosalalen-Based Chiral Cage for Enantioselective Recognition and Sensing, Chemistry A European Journal, 20, 6455-6461, (2014).
- Zhao, C., Ouyang, K., Zhang, J. and Yang, N., Chiral fluorescence polyethers based on BINOL for enantioselective recognition of phenylalanine anion, Polymer, 93, 9-13, (2016).
- Ghosh, K. and Majumdar, A., Isomeric chiral pyrrole diamides and their efficacy in enantioselective sensing of tartrate in sol-gel medium, Tetrahedron Letters, 57, 3629-3634, (2016).
- Ikai, T., Yun, C., Kojima, Y., Suzuki, D., Maeda, K. and Kanoh, S., Development of Amylose- and -Cyclodextrin-Based Chiral Fluorescent Sensors Bearing Terthienyl Pendants, Molecules, 21, 1518-1529, (2016).
- Seifert, H.M., Jiang, Y.-B. and Anslyn, E.V., Exploitation of the majority rules effect for the accurate measurement of high enantiomeric excess values using CD spectroscopy, Chemical Communications, 50, 15330-15332, (2014).
- Wolf, C., Stereolabile chiral compounds: analysis by dynamic chromatography and stopped-flow methods, Chemical Society Reviews, 34, 595-608, (2005).
- Khose, V.N., John, M.E., Pandey, A.D., Borovkov, V. and Karnik, A.V., Chiral Heterocycle-Based Receptors for Enantioselective Recognition, Symmetry, 10, 34-108, (2018).
- Bozkurt, S., Turkmen, M.B. and Soykan, C., Synthesis of new chiral calix[4]arene thiourea derivatives for enantiomeric recognition of carboxylate anions, Journal of Inclusion Phenomena and Macrocyclic Chemistry, 84, 35-41, (2016).
Ayrıntılar
Birincil Dil
İngilizce
Konular
Mühendislik
Bölüm
Araştırma Makalesi
Yayımlanma Tarihi
1 Aralık 2018
Gönderilme Tarihi
30 Mart 2018
Kabul Tarihi
11 Mayıs 2018
Yayımlandığı Sayı
Yıl 2018 Cilt: 20 Sayı: 2