Transfer of electronic excitation energy from naphthalene to fluorophore indicator on the surface of silica microspheres with covalently or physically bound cyclodextrins
Author:
Publisher
Pleiades Publishing Ltd
Subject
General Engineering,Condensed Matter Physics,General Materials Science
Link
http://link.springer.com/content/pdf/10.1134/S1995078013050145.pdf
Reference19 articles.
1. T. Ogoshi and A. Harada, “Chemical sensors based on cyclodextrin derivatives,” Sensors 8, 4961–4982 (2008).
2. J.-F. Ju, M.-J. Syu, H.-S. Teng, S.-K. Chou, and Y.-S. Chang, “Preparation and identification of β-cyclodextrin polymer thin film for quartz crystal microbalance sensing of benzene, toluene, and p-xylene,” Sens. Actuators B 132, 319–326 (2008).
3. A. Palaniappan, X. Li, F. E. H. Tay, and X. Su, “Cyclodextrin functionalized mesoporous silica films on quartz crystal microbalance for enhanced gas sensing,” Sens. Actuators B 119, 220–226 (2006).
4. L. Mohanambe and S. Vasudevan, “Aromatic molecules in restricted geometries: photophysics of naphthalene included in a cyclodextrin functionalized layered solid,” J. Phys. Chem. B 109(47), 22523–22529 (2005).
5. A. Bibby and L. Mercier, “Adsorption and separation of water-soluble aromatic molecules by cyclodextrin-functionalized mesoporous silica,” Green Chem. 5, 15–19 (2003).
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1. Detection of Analytes from Gas Phase Using Fluorophores and Host–Guest Complexes Incorporated into Lipid Bilayers on Silica Gel Nanoparticles;High Energy Chemistry;2019-01
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