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| Content Provider | World Health Organization (WHO)-Global Index Medicus |
|---|---|
| Author | Choudhury, Rupasree Purkayastha, Atanu Debnath, Diptanu Misra, Tarun Kumar |
| Description | Country affiliation: India Author Affiliation: Choudhury R ( Department of Chemistry, National Institute of Technology, Agartala, Tripura, 799046, India.); Purkayastha A ( Department of Chemistry, National Institute of Technology, Agartala, Tripura, 799046, India.); Debnath D ( Department of Chemistry, National Institute of Technology, Agartala, Tripura, 799046, India.); Misra TK ( Department of Chemistry, National Institute of Technology, Agartala, Tripura, 799046, India.) |
| Abstract | In this report, we have studied the recognition of citrate anions adsorbed on the surface of silver nanoparticles (cit-Ag-NPs), by macrocyclic polyammonium cations (MCPACs): Me6 [14]ane-N4 H8 (4+) (Tet-A/Tet-B cations) and [32]ane-N8 H16 (8+) , which are well reputed anion recognizers and are treated as to mimic of biological polyamines. The study was monitored on ultraviolet-visible spectroscopy by performing a titration of the aqueous dispersion of the cit-Ag-NPs by the aqueous solution of MCPACs. The ultraviolet-visible time-scan plots over the reduction of the absorption band of surface plasmon resonance of cit-Ag-NPs at 390 nm are well fitted with fourth-order polynomial equation and are employed to determine the initial aggregation rate constants. It has been stated that the aggregation is the result in electrostatic attraction followed by H-bond formation between the surface-adsorbed citrate anions and added MCPACs. The atomic force microscopy results have evidenced aggregation of cit-Ag-NPs in presence of MCPACs. The evaluated H-bonded association constant (Kasso ) using Benesi-Hildebrand method reveals that [32]ane-N8 H16 (8+) cations form stronger association complex, as expected, with the citrate anions than the Me6 [14]ane-N4 H8 (4+) cations. The study would thus provide the insight of molecular interactions involved in nanoparticle surface-adsorbed anions with biological polyamines. Copyright © 2016 John Wiley & Sons, Ltd. |
| File Format | HTM / HTML |
| ISSN | 09523499 |
| Issue Number | 9 |
| Journal | Journal of Molecular Recognition |
| Volume Number | 29 |
| e-ISSN | 10991352 |
| Language | English |
| Publisher | Wiley |
| Publisher Date | 2016-09-01 |
| Publisher Place | Great Britain (UK) |
| Access Restriction | One Nation One Subscription (ONOS) |
| Subject Keyword | Discipline Molecular Biology |
| Content Type | Text |
| Resource Type | Article |
| Subject | Structural Biology Molecular Biology |
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