研究目的
Investigating the mechanofluorochromic and acidochromic properties of D-π-A type quinoline derivatives for potential applications in stimuli-responsive fluorescent materials.
研究成果
The D-π-A type quinoline derivatives exhibit significant mechanofluorochromic and acidochromic properties, making them promising candidates for multi-stimuli responsive fluorescent materials. The large shift in emission peak during MFC processes and the rapid response to TFA vapor highlight their potential applications in sensors and optoelectronic devices.
研究不足
The study focuses on the mechanofluorochromic and acidochromic properties of specific quinoline derivatives. Potential areas for optimization include the sensitivity and selectivity towards different acid vapors.
1:Experimental Design and Method Selection
Synthesis of quinoline derivatives via Knoevenagel condensation reactions. Investigation of mechanofluorochromic and acidochromic properties.
2:Sample Selection and Data Sources
As-synthesized samples and ground powders of CbzVQ and TPAVQ. Casting films for sensory properties towards acid vapors.
3:List of Experimental Equipment and Materials
Bruker-Avance III 400 MHz and 100 MHz spectrometer, Nicolet-360 FT-IR spectrometer, Bruker microTOF-Q II apparatus, Shimadzu UV-1601PC ultraviolet visible spectrophotometer, Shimadzu RF-5301 luminescence spectrometer, Empyrean X-ray diffraction instrument, CHI 604C voltammetric analyzer.
4:Experimental Procedures and Operational Workflow
Preparation of ground powders by grinding as-synthesized samples. Fuming ground powders with CH2Cl2 vapor. Preparation of casting films by coating solutions on quartz substrates. Exposure of films to TFA and TEA vapors.
5:Data Analysis Methods
Analysis of UV-vis absorption and fluorescence emission spectra. XRD patterns analysis. Cyclic voltammetry for electrochemical properties. DFT calculations for electronic structures.
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Bruker microTOF-Q II apparatus
microTOF-Q II
Bruker
High-resolution mass analyses.
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Shimadzu UV-1601PC ultraviolet visible spectrophotometer
UV-1601PC
Shimadzu
Measuring UV-vis spectra.
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Shimadzu RF-5301 luminescence spectrometer
RF-5301
Shimadzu
Taking fluorescence emission spectra.
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CHI 604C voltammetric analyzer
604C
CHI
Performing cyclic voltammetry.
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Bruker-Avance III 400 MHz and 100 MHz spectrometer
Avance III
Bruker
Recording 1H NMR and 13C NMR spectra.
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Nicolet-360 FT-IR spectrometer
360
Nicolet
Obtaining FT-IR spectra.
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Empyrean X-ray diffraction instrument
Empyrean
Obtaining XRD patterns.
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