Molecules · 2022 · 19 citations · 52 references
EngineeringChemistryPhosphorescence ImagingBiosensing SystemsSynthesized CompoundAnalytical ChemistryNovel Fluorescent ProbeBioimagingThermally Activated Delayed FluorescenceChemical SensorPhotophysical PropertyBiophysicsPhotochemistryMolecular EngineeringFluorescence-sensing PropertiesNatural SciencesSpectroscopyViscosity-sensing FluorescenceChemical ProbeSpectroscopic Method
A novel highly water-soluble 1,8-naphthalimide with pH and viscosity-sensing fluorescence was synthesized and investigated. The synthesized compound was designed as a molecular device in which a molecular rotor and molecular "off-on" switcher were integrated. In order to obtain a TICT driven molecular motion at C-4 position of the 1,8-naphthalimide fluorophore, a 4-methylpiperazinyl fragment was introduced. The molecular motion was confirmed after photophysical investigation in solvents with different viscosity; furthermore, the fluorescence-sensing properties of the examined compound were investigated in 100% aqueous medium and it was found that it could be used as an efficient fluorescent probe for pH. Due to the non-emissive deexcitation nature of the TICT fluorophore, the novel system showed low yellow-green emission, which represented "power-on"/"rotor-on" state. The protonation of the methylpiperazine amine destabilized the TICT process, which was accompanied by fluorescence enhancement indicating a "power-on"/"rotor-off" state of the system. The results obtained clearly illustrated the great potential of the synthesized compound to serve as pH- and viscosity-sensing material in aqueous solution.
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Shunsuke Sasaki, Gregor P. C. Drummen, Gen‐ichi Konishi · Journal of Materials Chemistry C · 2016 · 1.1K citations · Full text
Recent progress on nanovehicles
Yasuhiro Shirai, Jean‐François Morin, Takashi Sasaki et al. · Chemical Society Reviews · 2006 · 251 citations