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刺激响应性PMOXA/PAA共混刷对蛋白质的可控吸附

摘要第5-7页
ABSTRACT第7-8页
Chapter 1 Introduction and Background第12-45页
    1.1 Polymer Brushes第12-14页
    1.2 Binary Polymer Brushes第14页
    1.3 Binary Polymer Brushes for Controlling Bio-adhesion第14-22页
        1.3.1 Oppositely Charged Binary Polymer Brushes第14-16页
        1.3.2 PE/Hydrophobic Binary Polymer Brushes第16-17页
        1.3.3 PE/Hydrophilic Binary Polymer Brushes第17-22页
    1.4 Poly(2-oxazoline)第22-26页
        1.4.1 Poly(2-oxazoline) (POXs)第22-23页
        1.4.2 Cationic Ring Opening Polymerization (CROP)第23页
        1.4.3 CROP of Oxazolines第23-24页
        1.4.4 Advantages of POXs第24-26页
    1.5 Surface Modification第26-32页
        1.5.1 Pattering via "Grafting from" Method第27-28页
        1.5.2 Pattering via "Grafting onto" Method第28-32页
    1.6 Objective of This Thesis第32-35页
    References第35-45页
Chapter 2 Characterization of Biomaterial Surfaces第45-54页
    2.1 X-ray Photoelectron Spectroscopy (XPS)第45-48页
        2.1.1 Surface Element Composition Determined Using XPS第45-46页
        2.1.2 Surface Mass Percentage Calculation Using XPS第46-48页
    2.2 Quartz Crystal Microbalance (QCM-D) Analysis第48-51页
        2.2.1 Working Principle of QCM-D第48-49页
        2.2.2 Sauerbrey Model and Interpretation of Dissipation第49-51页
    References第51-54页
Chapter 3 Controlled Protein Adsorption on PMOXA/PAA Based Coatings ByThermal Induced Immobilization第54-91页
    3.1 Introduction第54-57页
    3.2 Experimental第57-61页
        3.2.1 Materials第57-58页
        3.2.2 Synthesis of PMOXA-r-GMA第58-59页
        3.2.3 Synthesis of PAA-b-PGMA第59-60页
        3.2.4 General Procedure for Surface Modification第60-61页
    3.3 Characterizations第61-63页
        3.3.1 Nuclear Magnetic Resonance (NMR)第61页
        3.3.2 Gel Permeation Chromatography (GPC)第61-62页
        3.3.3 Fourier Transform Infrared Spectroscopy (FT-IR)第62页
        3.3.4 X-ray Photoelectron Spectroscopy (XPS)第62页
        3.3.5 Variable Angle Spectroscopic Ellipsometery (VASE)第62-63页
        3.3.6 Atomic Force Microscopy (AFM)第63页
    3.4 Switchable Properties第63-65页
        3.4.1 Hydrophilicity第63页
        3.4.2 Thickness第63-64页
        3.4.3 FITC-BSA Adsorption Assay第64页
        3.4.4 QCM-D Studies第64-65页
    3.5 Results and Discussion第65-84页
        3.5.1 Synthesis of Polymers第65-69页
        3.5.2 Characterization of Polymer Modified Surfaces第69-73页
        3.5.3 Switchable Properties第73-84页
            3.5.3.1 Hydrophilicity of Coatings第73-75页
            3.5.3.2 Thickness of Coatings第75-77页
            3.5.3.3 pH-dependent BSA Adsorption of Coatings第77-79页
            3.5.3.4 QCM-D Studies on BSA Adsorption第79-84页
    3.6 Conclusions第84-85页
    References第85-91页
Chapter 4 Reversible Protein Adsorption on PMOXA/PAA Based Coatings:Role of PAA第91-129页
    4.1 Introduction第91-93页
    4.2 Experimental第93-96页
        4.2.1 Materials第93-94页
        4.2.2 Synthesis of PMOXA-r-GMA第94-95页
        4.2.3 Synthesis of PAA-b-PGMA第95页
        4.2.4 Surface Modification Procedure第95-96页
    4.3 Characterizations第96-97页
        4.3.1 Nuclear Magnetic Resonance (NMR)第96页
        4.3.2 Gel Permeation Chromatography (GPC)第96页
        4.3.3 X-ray Photoelectron Spectrometer (XPS)第96-97页
        4.3.4 Variable Angle Spectroscopic Ellipsometery (VASE)第97页
        4.3.5 Atomic Force Microscopy (AFM)第97页
    4.4 Switchable Properties第97-99页
        4.4.1 Hydrophilicity第97-98页
        4.4.2 Thickness第98页
        4.4.3 Protein Adsorption Test第98-99页
    4.5 Results and Discussion第99-122页
        4.5.1 Synthesis of Polymers第99-101页
        4.5.2 Surface Modification第101-106页
        4.5.3 The Switchable Behaviour of Brushes第106-113页
        4.5.4 Protein Adsorption Studies第113-122页
    4.6 Conclusion第122-124页
    References第124-129页
Chapter 5 Overall Conclusions and Future Work第129-132页
    5.1 Overall Conclusions第129-130页
    5.2 Future Work第130-132页
Acknowledgements第132-133页
List of Published/Accepted Article第133页

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