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β-环糊精衍生的分子印迹聚合物作为选择性吸附剂用于食品安全分析的应用研究

ACKNOWLEDGEMENTS第7-13页
abstract第13-15页
CHAPTER 1 LITERATURE REVIEW第16-60页
    1.1 Background Information第16-17页
    1.2 Food safety hazard components第17-28页
        1.2.1 Biological hazards第18-25页
        1.2.2 Chemical hazards第25-28页
        1.2.3 Physical hazards第28页
    1.3 Research Direction第28-29页
    1.4 Research Objectives第29页
    1.5 The introduction of molecularly-imprinted polymers第29-31页
    1.6 Synthesis of MIPs第31-45页
        1.6.1 Covalent, non-covalent and semi-covalent approaches第34-36页
        1.6.2 Synthesis protocols第36-45页
    1.7 Template removal第45-48页
        1.7.1 Solvent extraction第45-46页
        1.7.2 Physically-assisted extraction第46-47页
        1.7.3 Subcritical or Supercritical solvent extraction第47-48页
    1.8 Applications of molecularly-imprinted polymers第48-59页
        1.8.1 Molecularly-imprinted solid-phase extraction (MISPE)第49-51页
        1.8.2 Molecularly-imprinted polymers as chemical sensors and biosensors第51-53页
        1.8.3 Molecularly-imprinted polymers as catalytic materials第53-55页
        1.8.4 Molecularly-imprinted polymers as drug delivery第55-59页
    1.9 Conclusion第59-60页
CHAPTER 2 EXPLOITING ALLYL-β-CYCLODEXTRIN AS FUNCTIONALMONOMERS IN MOLECULAR IMPRINTING FOR SELECTIVERECOGNITION OF PHTHALATES第60-84页
    2.1 Introduction第60-62页
    2.2 Experimental Section第62-68页
        2.2.1 Chemicals第62-63页
        2.2.2 Instruments第63页
        2.2.3 The preparation of allyl-β-CD interaction第63-64页
        2.2.4 The synthetic polymerization of MIPs第64页
        2.2.5 Binding assays第64-68页
            2.2.5.1 The influence of solvent on binding factor第64-65页
            2.2.5.2. The binding specificity第65-66页
            2.2.5.3. Binding dynamics and competitiveness第66页
            2.2.5.4 Preparation of Molecularly Imprinted Solid-Phase Extraction (MISPE) Procedure第66-68页
    2.3 Results and Discussion第68-82页
        2.3.1 Characterization of the synthesized MIPs第68-72页
        2.3.2 Binding assays第72-82页
            3.3.2.1 The influence of solvent on binding factor第72-73页
            2.3.2.2 The binding specificity第73-76页
            2.3.2.3 Binding dynamics and competitiveness第76-78页
            2.3.2.4 MISPE procedure第78-82页
    2.4 Conclusion第82-84页
CHAPTER 3 USING MOLECULARLY-IMPRINTED POLYMERS AS THEEXTRACTED SORBENTS OF CLENBUTEROL AHEAD OF LIQUIDCHROMATOGRAPHIC DETERMINATION第84-103页
    3.1 Introduction第84-86页
    3.2 Experimental Section第86-92页
        3.2.1 Chemicals第86-87页
        3.2.2 Instruments第87页
        3.2.3 The preparation of allyl-β-CD interaction第87-88页
        3.2.4 The synthetic polymerization of MIPs第88-89页
        3.2.5 Binding assays第89-92页
            3.2.5.1 The influence of adsorption solvent on the binding factor第89页
            3.2.5.2 The binding specificity第89-90页
            3.2.5.3 Binding dynamics and competitiveness第90页
            3.2.5.4 Procedure for preparation of Molecularly Imprinted Solid-Phase Extraction (MISPE)第90-92页
    3.3 Results and Discussion第92-102页
        3.3.1 Characterization of the synthesized MIPs第92-95页
        3.3.2 Binding assays第95-102页
            3.3.2.1 The influence of adsorption solvent on the binding factor第95-97页
            3.3.2.3 Binding dynamics and competitiveness第97-99页
            3.3.2.4 Validation of method via MISPE procedure第99-102页
            3.3.2.5 Real sample analysis第102页
    3.4 Conclusion第102-103页
CHAPTER 4 SYNTHESIS AND APPLICATION OF SELECTIVE ADSORBENTFOR PIRIMICARB PESTICIDE IN AQUEOUS MEDIA USING ALLYL-β-CYCLODEXTRIN AND METHACRYLIC ACID FUNCTIONAL MONOMERS第103-122页
    4.1 Introduction第103-105页
    4.2 Experimental Section第105-109页
        4.2.1 Chemicals第105-106页
        4.2.2 Instruments第106页
        4.2.3 The preparation of allyl-β-CD interaction第106页
        4.2.4 The synthetic polymerization of MIPs第106-107页
        4.2.5 The influence of adsorption solvent on binding factor第107页
        4.2.6 The binding specificity第107-108页
        4.2.7 Preparation for Molecularly Imprinted Solid Phase Extraction(MISPE) procedure第108-109页
    4.3 Results and Discussion第109-120页
        4.3.1 Characterization of the synthesized MIPs第109-111页
        4.3.2 Adsorption solvent evaluation第111-113页
        4.3.3 The binding specificity第113-114页
        4.3.4 Preparation for MISPE procedure第114-120页
    4.4. Conclusion第120-122页
CHAPTER 5 STATE-OF-ART APPLICATIONS OF CYCLODEXTRINS ASFUNCTIONAL MONOMERS IN MOLECULAR IMPRINTING TECHNIQUES:AREVIEW第122-138页
    5.1. Introduction第122-127页
    5.2 Cyclodextrin(its derivative)-based imprinted polymers第127-132页
    5.3 Combination of cyclodextrin(its derivative)and other functional monomers第132-136页
    5.4 Conclusion第136-138页
CHAPTER 6 OVERALL CONCLUSION AND FUTURE PROSPECTS第138-141页
    6.1 Overall Conclusion第138-140页
    6.2 Future prospects第140-141页
REFERENCES第141-167页

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