| Literature DB >> 26561816 |
Xuefang Shang1, Zhenhua Yang2, Jiajia Fu3, Peipei Zhao4, Xiufang Xu5.
Abstract
The synthesis of four symmetrical compounds containing urea/thiourea and anthracene/nitrobenzene groups was optimized. N,N'-Di((anthracen-9-yl)-methylene) thio-carbonohydrazide showed sensitive and selective binding ability for acetate ion among the studied anions. The presence of other competitive anions including F(-), H₂PO₄(-), Cl(-), Br(-) and I(-) did not interfere with the strong binding ability. The mechanism of the host-guest interaction was through multiple hydrogen bonds due to the conformational complementarity and higher basicity. A theoretical investigation explained that intra-molecular hydrogen bonds existed in the compound which could strengthen the anion binding ability. In addition, molecular frontier orbitals in molecular interplay were introduced in order to explain the red-shift phenomenon in the host-guest interaction process. Compounds based on thiourea and anthracene derivatives can thus be used as a chemosensor for detecting acetate ion in environmental and pharmaceutical samples.Entities:
Keywords: chemosensor; symmetrical structure; theoretical investigation; thiourea derivative
Mesh:
Substances:
Year: 2015 PMID: 26561816 PMCID: PMC4701274 DOI: 10.3390/s151128166
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576
Scheme 1The synthesized compounds.
Figure 1UV-Vis spectral changes of compounds (4.0 × 10−5 mol·L−1) in DMSO upon addition of AcO− (0–50 equiv), (a) 1; (b) 3. The arrow indicates the direction of increase of acetate concentration.
Figure 2Fluorescence titration of compounds (4.0 × 10−5 mol·L−1) with AcO− in DMSO at 298 K. (a) 1; (b) 3.
The binding constants Ks (M−1) of the compounds with various anions.
| Anion a | Compound | |
|---|---|---|
| 1 | 3 | |
| AcO− | (1.33 ± 0.08) × 104 | (3.93 ± 0.06) × 104 |
| F− | (2.06 ± 0.14) × 103 | (2.64 ± 0.02) × 104 |
| H2PO4− | (9.25 ± 0.27) × 102 | (4.45 ± 0.24) × 103 |
| Cl−, Br− or I− | ND b | ND |
a The anions were added in the form of tetra-n-butylammonium salts; b The spectrum changed little and the binding constant could not be calculated.
Figure 3UV-Vis spectral changes of compound 1 (4.0 × 10−5 mol·L−1) upon the addition of anions (8.0 × 10−5 mol·L−1).
Figure 4Optimized geometries of (a) Compound 1 and (b) Compound 3.
Figure 5Molecular orbital level of compound 1 and 3, (a) HOMO of 1; (b) LUMO of 1; (c) HOMO of 3; (d) LUMO of 3.