Journal
ORGANIC LETTERS
Volume 23, Issue 22, Pages 8727-8732Publisher
AMER CHEMICAL SOC
DOI: 10.1021/acs.orglett.1c03175
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Funding
- NATO Science for Peace and Security Programme [SPS G5536]
- Ministerio de Ciencia, Innovacion y Universidades-FEDER [PID2019-111215RB-100, RTI2018-102040-B-100]
- Junta de Castilla y Leon, Consejeria de Educacion y Cultura y Fondo Social Europeo [BU263P18]
- la Caixa Foundation [LCF/PR/PR12/11070003]
- Secretaria General de Universidades [FPU18/03225]
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Water-soluble coronenes form nanoparticles by self-association and act as new fluorescent materials by complexation with cucurbit[7]uril. They also serve as selective turn-on fluorogenic sensors for nitroaromatic explosives with remarkable selectivity, using only water as solvent.
Water-soluble coronenes, that form nanoparticles by self-association, work as new fluorescent materials by complexation with cucurbit[7]uril, as well as selective turn-on fluorogenic sensors for nitroaromatic explosives with remarkable selectivity, by using only water as solvent.
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