研究目的
Investigating the synthesis and application of hydroxybutyl chitosan (HBC) nanohydrogels for smart windows, focusing on their temperature-responsive phase transformation behavior and light regulation capabilities.
研究成果
The study successfully synthesized HBC nanohydrogels using a green and homogeneous system, demonstrating their temperature-responsive phase transformation behavior and potential application in smart windows for UV and visible light regulation. The work extends the application of chitosan-based materials in intelligent responsive systems.
研究不足
The study focuses on the synthesis and preliminary application of HBC nanohydrogels, with potential areas for optimization including the scalability of the synthesis process and the long-term stability of the nanohydrogels in practical applications.
1:Experimental Design and Method Selection:
The study utilized a green and homogeneous system (KOH/urea) for the synthesis of HBC, focusing on its temperature-responsive phase transformation behavior.
2:Sample Selection and Data Sources:
Chitosan was used as the raw material, with HBC synthesized in different degrees of substitution (DS) called HBC-1, HBC-2, and HBC-
3:List of Experimental Equipment and Materials:
Instruments included FTIR, 1H NMR, EA, 13C NMR, XRD, AFM, SEM, TEM, and DLS. Materials included CS, KOH, epoxy butane, urea, and other chemical reagents.
4:Experimental Procedures and Operational Workflow:
HBC was prepared by alkylation modification in a KOH/urea dissolution system, followed by characterization and application testing in smart windows.
5:Data Analysis Methods:
Structural characterizations were verified by FTIR, 1H NMR, EA, 13C NMR, and XRD. Morphology and assembly mechanism were determined by AFM, SEM, TEM, and DLS.
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Scanning electron microscope
JSM-6010LA
JEOL Ltd.
Observation of the temperature responsive reversible transformation of the HBC-2
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Atomic force microscope
agilent 5400
Bruker
Measurements of HBC-2 at 4 °C
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Dynamic light scattering
Zetasizer ZEN3600
Malvern Instruments Ltd
Determination of mean particle diameter, polydispersity index (PDI) and zeta potential of HBC-2 solutions
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Hydrogen nuclear magnetic resonance
Bruker AV600 MHz
Bruker
Recording spectra of CS and HBCs
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Carbon nuclear magnetic resonance
Bruker Avance III DSX400 MHz
Bruker
Acquiring solid-state 13C NMR spectra of CS and HBCs
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X-ray diffractometer
RINT2000/PC
Rigaku
Evaluation of the crystal phase of CS and HBCs
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Fourier transform infrared spectroscopy
Nicolet FTIR 5700
Madison
Verification of the synthesis of HBCs
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Elemental analyzer
Carlo-Erba, model EA1108 or higher
Carlo-Erba
Verification of the DS of HBCs
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Transmission electron microscope
100 CX II
Japan
Imaging of HBC-2 solutions
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UV–vis spectrophotometer
UV-1200 MAPADA
China
Determination of absorbance and transmittance of HBC-2 with different concentrations
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