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Briggs-Rauscher和Belousov-Zhabotinsky化学振荡在分析化学中的应用研究

摘要第5-8页
ABSTRACT第8-11页
Chapter 1.Introduction of Non-linear chemical dynamics第18-48页
    1.1. Nonlinear chemical dynamics第18-19页
    1.2. Oscillation chemical reaction第19-29页
        1.2.1. Historical background of chemical oscillation第19-23页
        1.2.2. Belousov-Zhabotinsky chemical oscillator第23-24页
        1.2.3. Application of BZ chemical oscillator第24-26页
        1.2.4. Journey of BZ to North America第26-27页
        1.2.5. Briggs-Rauscher chemical oscillation第27-28页
        1.2.6. Application of BR Oscillator第28-29页
    1.3. Research progress in chemical chaos第29-30页
    1.4. Research progress in chemical waves and patterns第30-33页
        1.4.1. A brief summary on chemical waves第31-32页
        1.4.2. Overview of chemical patterns第32-33页
    1.5. The Idea and significance of selected topics第33-36页
        1.5.1. Topic Idea for research work第33-35页
        1.5.2. Significance of selected topics第35-36页
    References第36-48页
Chapter 2:Determination of Ethyl Vanillin by Using a Briggs-Rauscher Oscillator第48-72页
    2.1. Introduction第48-50页
    2.2. Experimental第50-53页
        2.2.1. Reagents第50页
        2.2.2. Preparation of tetra-aza-macrocyclic Ni complex ([NiL](ClO_4)_2)第50页
        2.2.3. Procedure for the synthesis of perchlorate ligand(L.2HClO_4)_2)第50-51页
        2.2.4. Preparation of tetra-aza-macrocyclic Ni complex ([NiL](ClO_4)_2)第51页
        2.2.5. Infra-Red spectroscopy of [NiL](ClO_4)_2第51-52页
        2.2.6. Elementary analysis of [NiL](ClO_4)_2第52页
        2.2.7. Apparatus第52-53页
        2.2.8. Procedure第53页
    2.3. Results and Discussions第53-67页
        2.3.1. Influence of experimental variables第55-60页
        2.3.2. Determination of Ethyl vanillin (EV)第60-61页
        2.3.3. Percentage recovery of Ethyl vanillin第61-63页
        2.3.4. Mechanism第63-67页
            2.3.4.1. Cyclic voltammetry (CV)第63-64页
            2.3.4.2. Interpretation of Mechanism第64-67页
    References第67-72页
Chapter 3: Inhibitory Effect of Morin on Briggs-Rauscher Reaction第72-89页
    3.1. Introduction 55第72-73页
    3.2. Experimental第73-74页
        3.2.1. Reagents第73-74页
        3.2.2. Apparatus第74页
        3.2.3. Procedure第74页
    3.3. Results and Discussions第74-83页
        3.3.1. Typical oscillation第74-75页
        3.3.2. Perturbation of BR oscillator第75-76页
        3.3.3. Influences of experimental variables第76-79页
        3.3.4. Determination of Morin第79-81页
        3.3.5. Proposed Mechanism for Morin第81-83页
    References第83-89页
Chapter 4: Determination of p-Coumaric Acid by Oscillating System第89-107页
    4.1. Introduction第89-90页
    4.2. Experimental第90-92页
        4.2.1. Reagents第90-91页
        4.2.2. Apparatus第91页
        4.2.3. Procedure第91-92页
    4.3. Results and Discussions第92-101页
        4.3.1. Influence of experimental variables第93-96页
        4.3.2. Determination of p-Coumaric acid第96-98页
        4.3.3. Mechanism第98-101页
    References第101-107页
Chapter 5:Identification of Two Positional Isomers between Ortho Vanillin and Para Vanillin by Using a Briggs-Rauscher Oscillator第107-123页
    5.1. Introduction第107-109页
    5.2. Experimental第109-111页
        5.2.1. Reagents第109-110页
        5.2.2. Apparatus第110-111页
        5.2.3. Procedure第111页
    5.3. Result and Discussions第111-117页
        5.3.1. BR typical profile第111页
        5.3.2. Addition of additives in active BR第111-113页
        5.3.3. Proposed Mechanism第113-117页
    References第117-123页
Chapter 6: Identification of Two Functional Group Isomers: Propanal and Acetone by Using Belousov-Zhabotinsky Oscillator第123-140页
    6.1. Introduction第123-125页
    6.2. Experimental第125-128页
        6.2.1. Chemicals第125页
        6.2.2. Preparation of Macrocyclic Cu-Complex Catalyst ([CuL](ClO_4)_2)第125-126页
        6.2.3. Synthesis of perchlorate ligand (L·2HClO_4)_2第126页
        6.2.4. Procedure for the synthesis of tetra-aza-macrocyclic complex catalyst [CuL](ClO_4)_2第126-127页
        6.2.5. Infra-Red spectroscopy of tetra-aza-macrocyclic Cu-complex catalyst [CUL](ClO_4)_2第127页
        6.2.6. Elemental analysis of tetra-aza-macrocyclic Cu-complex catalyst [CuL](ClO_4)_2第127-128页
        6.2.7. Apparatus第128页
        6.2.8. Procedure第128页
    6.3. Results and Discussions第128-134页
        6.3.1. BZ typical oscillation第128-129页
        6.3.2. Perturbation of BZprofile第129-131页
        6.3.3. Mechanism第131-132页
        6.3.4. Cyclic voltammetry experiment (CV)第132-134页
        6.3.5. Interpretation of mechanism第134页
    6.4. Summary第134-135页
    References第135-140页
Chapter 7: Identification of Three Isomers of Mono Hydroxy Benzoic Acid by Using Two Chemical Oscillators第140-165页
    7.1. Introdution第140-143页
    7.2. Experimental第143-145页
        7.2.1. Reagents第143-144页
        7.2.2. Apparatus第144页
        7.2.3. Procedure for BR第144-145页
        7.2.4. Procedure of BZ第145页
    7.3. Results and Discussions第145-159页
        7.3.1. BR Typical Oscillation第145-146页
        7.3.2. Perturbation of BR Oscillation第146-148页
        7.3.3. Typical Oscillation for BZ Reaction第148页
        7.3.4. Perturbation of BZ Oscillation第148-150页
        7.3.5. Mechanisms for BR Oscillating System第150-151页
        7.3.6. Cyclic Voltammetry (CV) for BR第151-152页
        7.3.7. Product Identification in BR System第152-153页
        7.3.8. Interpretation of Reaction 13 (2-HBA with IO3-)第153-154页
        7.3.9. Mechanism for BZ Oscillating Reaction第154-155页
        7.3.10. Cyclic Voltammetry Experiments for 3-HBA and 4-HBA in BZ第155-156页
        7.3.11. Product Identification in the BZ System第156-157页
        7.3.12. Reaction of 3-HBA with BrO_2· Radical (Interpretation of Reaction 21)第157-158页
        7.3.13. Interpretation of Reaction 22 (Reaction of 4-HBA with BrO3-)第158-159页
    References第159-165页
Conclusions第165-168页
Acknowledgements第168-169页
Publications第169-170页

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