Two thiosemicarbazide and semicarbazide functionalized pyrene labeled Schiff base compounds have been synthesized. The pyrene moieties in the compounds result in formation of π-π coupled complexes in aqueous medium in the excited electronic state. Added γ-cyclodextrin allows incorporation of the pyrene head inside its less polar core and promotes hydrogen bonding of the thio and oxo groups of the compounds with its rim hydroxyl groups to "stabilise" the monomers. This is confirmed by FT-IR and absorption spectroscopy. The stabilised monomers lead to formation of stabilised excimers as monitored by steady state and time-resolved fluorescence spectroscopy through varying the experimental conditions. The proposed model for the stabilisation of the Schiff base monomers has been evidenced by comparing with the fluorescence spectroscopic changes of two control compounds. The present work reports a step ahead toward proposing a simple host-guest method to extra stabilise the pyrene based excimers that can be biologically utilised.
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Free University of Berlin, Institute of Pharmacy, Pharmacology and Toxicology, Berlin, Germany; BASF SE, Experimental Toxicology and Ecology, Ludwigshafen am Rhein, Germany.
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Civil and Environmental Engineering, Duke University, Hudson Hall 121, Box 90287, Durham, NC, 27708, USA.
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Faculty of Engineering, Hokkaido University, Sapporo 060-8628, Japan. Electronic address:
Starch-derived hydrophilic malto-oligosaccharides (Glc, where n = 1-7) conjugated to hydrophobic solanesol through click chemistry, i.e., Glc-b-Sol copolymers, have demonstrated significant promise in developing fully natural block co-oligomers for solid-state nanopatterning applications.
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IISER Bhopal: Indian Institute of Science Education and Research Bhopal, Department of Chemistry, Bhopal Bypass Road, Bhauri, 462066, Bhopal, INDIA.
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State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, 100085, China.
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